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GsfElectronMCFakeAnalyzer Class Reference

#include <GsfElectronMCFakeAnalyzer.h>

Inheritance diagram for GsfElectronMCFakeAnalyzer:
edm::one::EDAnalyzer<> edm::one::EDAnalyzerBase edm::EDConsumerBase

Public Member Functions

void analyze (const edm::Event &e, const edm::EventSetup &c) override
 
void beginJob () override
 
void endJob () override
 
 GsfElectronMCFakeAnalyzer (const edm::ParameterSet &conf)
 
 ~GsfElectronMCFakeAnalyzer () override
 
- Public Member Functions inherited from edm::one::EDAnalyzer<>
 EDAnalyzer ()=default
 
SerialTaskQueueglobalLuminosityBlocksQueue () final
 
SerialTaskQueueglobalRunsQueue () final
 
bool wantsGlobalLuminosityBlocks () const final
 
bool wantsGlobalRuns () const final
 
- Public Member Functions inherited from edm::one::EDAnalyzerBase
void callWhenNewProductsRegistered (std::function< void(BranchDescription const &)> const &func)
 
 EDAnalyzerBase ()
 
ModuleDescription const & moduleDescription () const
 
bool wantsStreamLuminosityBlocks () const
 
bool wantsStreamRuns () const
 
 ~EDAnalyzerBase () override
 
- Public Member Functions inherited from edm::EDConsumerBase
std::vector< ConsumesInfoconsumesInfo () const
 
void convertCurrentProcessAlias (std::string const &processName)
 Convert "@currentProcess" in InputTag process names to the actual current process name. More...
 
 EDConsumerBase ()
 
 EDConsumerBase (EDConsumerBase const &)=delete
 
 EDConsumerBase (EDConsumerBase &&)=default
 
ESProxyIndex const * esGetTokenIndices (edm::Transition iTrans) const
 
ProductResolverIndexAndSkipBit indexFrom (EDGetToken, BranchType, TypeID const &) const
 
void itemsMayGet (BranchType, std::vector< ProductResolverIndexAndSkipBit > &) const
 
void itemsToGet (BranchType, std::vector< ProductResolverIndexAndSkipBit > &) const
 
std::vector< ProductResolverIndexAndSkipBit > const & itemsToGetFrom (BranchType iType) const
 
void labelsForToken (EDGetToken iToken, Labels &oLabels) const
 
void modulesWhoseProductsAreConsumed (std::vector< ModuleDescription const * > &modules, ProductRegistry const &preg, std::map< std::string, ModuleDescription const * > const &labelsToDesc, std::string const &processName) const
 
EDConsumerBase const & operator= (EDConsumerBase const &)=delete
 
EDConsumerBaseoperator= (EDConsumerBase &&)=default
 
bool registeredToConsume (ProductResolverIndex, bool, BranchType) const
 
bool registeredToConsumeMany (TypeID const &, BranchType) const
 
ProductResolverIndexAndSkipBit uncheckedIndexFrom (EDGetToken) const
 
void updateLookup (BranchType iBranchType, ProductResolverIndexHelper const &, bool iPrefetchMayGet)
 
void updateLookup (eventsetup::ESRecordsToProxyIndices const &)
 
virtual ~EDConsumerBase () noexcept(false)
 

Private Attributes

edm::InputTag beamSpot_
 
double deltaR_
 
double detamatchmax
 
double detamatchmin
 
double detamax
 
double detamin
 
double dphimatchmax
 
double dphimatchmin
 
double dphimax
 
double dphimin
 
edm::InputTag electronCollection_
 
double eopmax
 
double eopmaxsht
 
double etamax
 
double etamin
 
double fhitsmax
 
TH1F * h_ele_ambiguousTracks
 
TH2F * h_ele_ambiguousTracksVsEta
 
TH2F * h_ele_ambiguousTracksVsPhi
 
TH2F * h_ele_ambiguousTracksVsPt
 
TH1F * h_ele_charge
 
TH2F * h_ele_chargeVsEta
 
TH2F * h_ele_chargeVsPhi
 
TH2F * h_ele_chargeVsPt
 
TH1F * h_ele_chi2
 
TH1F * h_ele_chi2_barrel
 
TH1F * h_ele_chi2_endcaps
 
TH2F * h_ele_chi2VsEta
 
TH2F * h_ele_chi2VsPhi
 
TH2F * h_ele_chi2VsPt
 
TH1F * h_ele_classes
 
TH1F * h_ele_dEtaCl_propOut
 
TH1F * h_ele_dEtaCl_propOut_all
 
TH1F * h_ele_dEtaCl_propOut_barrel
 
TH1F * h_ele_dEtaCl_propOut_eg
 
TH1F * h_ele_dEtaCl_propOut_eg_barrel
 
TH1F * h_ele_dEtaCl_propOut_eg_endcaps
 
TH1F * h_ele_dEtaCl_propOut_endcaps
 
TH2F * h_ele_dEtaClVsEta_propOut
 
TH2F * h_ele_dEtaClVsPhi_propOut
 
TH2F * h_ele_dEtaClVsPt_propOut
 
TH1F * h_ele_dEtaEleCl_propOut
 
TH1F * h_ele_dEtaEleCl_propOut_barrel
 
TH1F * h_ele_dEtaEleCl_propOut_eg
 
TH1F * h_ele_dEtaEleCl_propOut_eg_barrel
 
TH1F * h_ele_dEtaEleCl_propOut_eg_endcaps
 
TH1F * h_ele_dEtaEleCl_propOut_endcaps
 
TH2F * h_ele_dEtaEleClVsEta_propOut
 
TH2F * h_ele_dEtaEleClVsPhi_propOut
 
TH2F * h_ele_dEtaEleClVsPt_propOut
 
TH1F * h_ele_dEtaSc_propVtx
 
TH1F * h_ele_dEtaSc_propVtx_all
 
TH1F * h_ele_dEtaSc_propVtx_barrel
 
TH1F * h_ele_dEtaSc_propVtx_eg
 
TH1F * h_ele_dEtaSc_propVtx_eg_barrel
 
TH1F * h_ele_dEtaSc_propVtx_eg_endcaps
 
TH1F * h_ele_dEtaSc_propVtx_endcaps
 
TH2F * h_ele_dEtaScVsEta_propVtx
 
TH2F * h_ele_dEtaScVsPhi_propVtx
 
TH2F * h_ele_dEtaScVsPt_propVtx
 
TH1F * h_ele_dPhiCl_propOut
 
TH1F * h_ele_dPhiCl_propOut_all
 
TH1F * h_ele_dPhiCl_propOut_barrel
 
TH1F * h_ele_dPhiCl_propOut_eg
 
TH1F * h_ele_dPhiCl_propOut_eg_barrel
 
TH1F * h_ele_dPhiCl_propOut_eg_endcaps
 
TH1F * h_ele_dPhiCl_propOut_endcaps
 
TH2F * h_ele_dPhiClVsEta_propOut
 
TH2F * h_ele_dPhiClVsPhi_propOut
 
TH2F * h_ele_dPhiClVsPt_propOut
 
TH1F * h_ele_dPhiEleCl_propOut
 
TH1F * h_ele_dPhiEleCl_propOut_barrel
 
TH1F * h_ele_dPhiEleCl_propOut_eg
 
TH1F * h_ele_dPhiEleCl_propOut_eg_barrel
 
TH1F * h_ele_dPhiEleCl_propOut_eg_endcaps
 
TH1F * h_ele_dPhiEleCl_propOut_endcaps
 
TH2F * h_ele_dPhiEleClVsEta_propOut
 
TH2F * h_ele_dPhiEleClVsPhi_propOut
 
TH2F * h_ele_dPhiEleClVsPt_propOut
 
TH1F * h_ele_dPhiSc_propVtx
 
TH1F * h_ele_dPhiSc_propVtx_all
 
TH1F * h_ele_dPhiSc_propVtx_barrel
 
TH1F * h_ele_dPhiSc_propVtx_eg
 
TH1F * h_ele_dPhiSc_propVtx_eg_barrel
 
TH1F * h_ele_dPhiSc_propVtx_eg_endcaps
 
TH1F * h_ele_dPhiSc_propVtx_endcaps
 
TH2F * h_ele_dPhiScVsEta_propVtx
 
TH2F * h_ele_dPhiScVsPhi_propVtx
 
TH2F * h_ele_dPhiScVsPt_propVtx
 
TH2F * h_ele_E2mnE1vsMee_all
 
TH2F * h_ele_E2mnE1vsMee_egeg_all
 
TH1F * h_ele_ecalRecHitSumEt_dr03
 
TH1F * h_ele_ecalRecHitSumEt_dr04
 
TH1F * h_ele_EeleOPout
 
TH1F * h_ele_EeleOPout_all
 
TH1F * h_ele_EeleOPout_barrel
 
TH1F * h_ele_EeleOPout_eg
 
TH1F * h_ele_EeleOPout_eg_barrel
 
TH1F * h_ele_EeleOPout_eg_endcaps
 
TH1F * h_ele_EeleOPout_endcaps
 
TH2F * h_ele_EeleOPoutVsE
 
TH2F * h_ele_EeleOPoutVsEta
 
TH2F * h_ele_EeleOPoutVsPhi
 
TH1F * h_ele_EoP
 
TH1F * h_ele_EoP_barrel
 
TH1F * h_ele_EoP_eg
 
TH1F * h_ele_EoP_eg_barrel
 
TH1F * h_ele_EoP_eg_endcaps
 
TH1F * h_ele_EoP_endcaps
 
TH1F * h_ele_EoPout
 
TH1F * h_ele_EoPout_all
 
TH1F * h_ele_EoPout_barrel
 
TH1F * h_ele_EoPout_eg
 
TH1F * h_ele_EoPout_eg_barrel
 
TH1F * h_ele_EoPout_eg_endcaps
 
TH1F * h_ele_EoPout_endcaps
 
TH2F * h_ele_EoPoutVsE
 
TH2F * h_ele_EoPoutVsEta
 
TH2F * h_ele_EoPoutVsPhi
 
TH2F * h_ele_EoPVsE
 
TH2F * h_ele_EoPVsEta
 
TH2F * h_ele_EoPVsPhi
 
TH1F * h_ele_EoverP_all
 
TH1F * h_ele_EseedOP
 
TH1F * h_ele_EseedOP_all
 
TH1F * h_ele_EseedOP_barrel
 
TH1F * h_ele_EseedOP_eg
 
TH1F * h_ele_EseedOP_eg_barrel
 
TH1F * h_ele_EseedOP_eg_endcaps
 
TH1F * h_ele_EseedOP_endcaps
 
TH2F * h_ele_EseedOPVsE
 
TH2F * h_ele_EseedOPVsEta
 
TH2F * h_ele_EseedOPVsPhi
 
TH1F * h_ele_eta
 
TH1F * h_ele_eta_bbrem
 
TH1F * h_ele_eta_golden
 
TH1F * h_ele_eta_narrow
 
TH1F * h_ele_eta_shower
 
TH1F * h_ele_EtaMnEtamatchingObject
 
TH2F * h_ele_EtaMnEtamatchingObjectVsEta
 
TH2F * h_ele_EtaMnEtamatchingObjectVsPhi
 
TH2F * h_ele_EtaMnEtamatchingObjectVsPt
 
TH1F * h_ele_fbrem
 
TProfile * h_ele_fbremVsEta_mean
 
TProfile * h_ele_fbremVsEta_mode
 
TH1F * h_ele_foundHits
 
TH1F * h_ele_foundHits_barrel
 
TH1F * h_ele_foundHits_endcaps
 
TH2F * h_ele_foundHitsVsEta
 
TH2F * h_ele_foundHitsVsPhi
 
TH2F * h_ele_foundHitsVsPt
 
TH1F * h_ele_hcalDepth1TowerSumEt_dr03
 
TH1F * h_ele_hcalDepth1TowerSumEt_dr04
 
TH1F * h_ele_hcalDepth2TowerSumEt_dr03
 
TH1F * h_ele_hcalDepth2TowerSumEt_dr04
 
TH1F * h_ele_HoE
 
TH1F * h_ele_HoE_all
 
TH1F * h_ele_HoE_barrel
 
TH1F * h_ele_HoE_eg
 
TH1F * h_ele_HoE_eg_barrel
 
TH1F * h_ele_HoE_eg_endcaps
 
TH1F * h_ele_HoE_endcaps
 
TH1F * h_ele_HoE_fiducial
 
TH2F * h_ele_HoEVsE
 
TH2F * h_ele_HoEVsEta
 
TH2F * h_ele_HoEVsPhi
 
TH1F * h_ele_lostHits
 
TH1F * h_ele_lostHits_barrel
 
TH1F * h_ele_lostHits_endcaps
 
TH2F * h_ele_lostHitsVsEta
 
TH2F * h_ele_lostHitsVsPhi
 
TH2F * h_ele_lostHitsVsPt
 
TH1F * h_ele_matchingObjectAbsEta_matched
 
TH1F * h_ele_matchingObjectEta_matched
 
TH1F * h_ele_matchingObjectPhi_matched
 
TH1F * h_ele_matchingObjectPt_matched
 
TH1F * h_ele_matchingObjectZ_matched
 
TH1F * h_ele_mee_all
 
TH1F * h_ele_mee_os
 
TH1F * h_ele_mva
 
TH1F * h_ele_outerP
 
TH1F * h_ele_outerP_mode
 
TH1F * h_ele_outerPt
 
TH1F * h_ele_outerPt_mode
 
TH2F * h_ele_outerPtVsEta_mode
 
TH2F * h_ele_outerPtVsPhi_mode
 
TH2F * h_ele_outerPtVsPt_mode
 
TH2F * h_ele_outerPVsEta_mode
 
TH1F * h_ele_PhiMnPhimatchingObject
 
TH1F * h_ele_PhiMnPhimatchingObject2
 
TH2F * h_ele_PhiMnPhimatchingObjectVsEta
 
TH2F * h_ele_PhiMnPhimatchingObjectVsPhi
 
TH2F * h_ele_PhiMnPhimatchingObjectVsPt
 
TH1F * h_ele_PinMnPout
 
TH1F * h_ele_PinMnPout_mode
 
TH2F * h_ele_PinMnPoutVsChi2_mode
 
TH2F * h_ele_PinMnPoutVsE_mode
 
TH2F * h_ele_PinMnPoutVsEta_mode
 
TH2F * h_ele_PinMnPoutVsPhi_mode
 
TH2F * h_ele_PinMnPoutVsPt_mode
 
TH2F * h_ele_PinVsPoutGolden_mean
 
TH2F * h_ele_PinVsPoutGolden_mode
 
TH2F * h_ele_PinVsPoutShowering_mean
 
TH2F * h_ele_PinVsPoutShowering_mode
 
TH1F * h_ele_PoPmatchingObject
 
TH1F * h_ele_PoPmatchingObject_barrel
 
TH1F * h_ele_PoPmatchingObject_endcaps
 
TH2F * h_ele_PoPmatchingObjectVsEta
 
TH2F * h_ele_PoPmatchingObjectVsPhi
 
TH2F * h_ele_PoPmatchingObjectVsPt
 
TH1F * h_ele_provenance
 
TH2F * h_ele_PtinVsPtoutGolden_mean
 
TH2F * h_ele_PtinVsPtoutGolden_mode
 
TH2F * h_ele_PtinVsPtoutShowering_mean
 
TH2F * h_ele_PtinVsPtoutShowering_mode
 
TH1F * h_ele_seed_dphi2_
 
TH2F * h_ele_seed_dphi2VsEta_
 
TH2F * h_ele_seed_dphi2VsPt_
 
TH1F * h_ele_seed_drz2_
 
TH2F * h_ele_seed_drz2VsEta_
 
TH2F * h_ele_seed_drz2VsPt_
 
TH1F * h_ele_seed_subdet2_
 
TH1F * h_ele_TIP_all
 
TH1F * h_ele_tkSumPt_dr03
 
TH1F * h_ele_tkSumPt_dr04
 
TH1F * h_ele_vertexAbsEta
 
TH1F * h_ele_vertexEta
 
TH1F * h_ele_vertexEta_all
 
TH2F * h_ele_vertexEtaVsPhi
 
TH1F * h_ele_vertexP
 
TH1F * h_ele_vertexPhi
 
TH1F * h_ele_vertexPt
 
TH1F * h_ele_vertexPt_all
 
TH2F * h_ele_vertexPtVsEta
 
TH2F * h_ele_vertexPtVsPhi
 
TH1F * h_ele_vertexTIP
 
TH2F * h_ele_vertexTIPVsEta
 
TH2F * h_ele_vertexTIPVsPhi
 
TH2F * h_ele_vertexTIPVsPt
 
TH1F * h_ele_vertexX
 
TH1F * h_ele_vertexY
 
TH1F * h_ele_vertexZ
 
TH1F * h_matchingObjectAbsEta
 
TH1F * h_matchingObjectEta
 
TH1F * h_matchingObjectNum
 
TH1F * h_matchingObjectP
 
TH1F * h_matchingObjectPhi
 
TH1F * h_matchingObjectPt
 
TH1F * h_matchingObjectZ
 
TFile * histfile_
 
TH1F * histNum_
 
TH1F * histSclE1x5_
 
TH1F * histSclE1x5_barrel_
 
TH1F * histSclE1x5_endcaps_
 
TH1F * histSclE2x5max_
 
TH1F * histSclE2x5max_barrel_
 
TH1F * histSclE2x5max_endcaps_
 
TH1F * histSclE5x5_
 
TH1F * histSclE5x5_barrel_
 
TH1F * histSclE5x5_endcaps_
 
TH1F * histSclEn_
 
TH1F * histSclEoEmatchingObject_barrel
 
TH1F * histSclEoEmatchingObject_endcaps
 
TH1F * histSclEoEmatchingObjectGolden_barrel
 
TH1F * histSclEoEmatchingObjectGolden_endcaps
 
TH1F * histSclEoEmatchingObjectShowering_barrel
 
TH1F * histSclEoEmatchingObjectShowering_endcaps
 
TH1F * histSclEt_
 
TH1F * histSclEta_
 
TH2F * histSclEtaVsPhi_
 
TH2F * histSclEtVsEta_
 
TH2F * histSclEtVsPhi_
 
TH1F * histSclPhi_
 
TH1F * histSclSigEtaEta_
 
TH1F * histSclSigEtaEta_barrel_
 
TH1F * histSclSigEtaEta_endcaps_
 
TH1F * histSclSigIEtaIEta_
 
TH1F * histSclSigIEtaIEta_barrel_
 
TH1F * histSclSigIEtaIEta_endcaps_
 
double hoemax
 
double hoemin
 
double lhitsmax
 
edm::InputTag matchingObjectCollection_
 
double maxAbsEta_
 
double maxPt_
 
float mcEnergy [10]
 
float mcEta [10]
 
float mcPhi [10]
 
float mcPt [10]
 
float mcQ [10]
 
double meemax
 
double meemin
 
int nbindeta
 
int nbindetamatch
 
int nbindetamatch2D
 
int nbindphi
 
int nbindphimatch
 
int nbindphimatch2D
 
int nbineop
 
int nbineop2D
 
int nbineta
 
int nbineta2D
 
int nbinfhits
 
int nbinhoe
 
int nbinlhits
 
int nbinmee
 
int nbinp
 
int nbinp2D
 
int nbinphi
 
int nbinphi2D
 
int nbinpt
 
int nbinpt2D
 
int nbinpteff
 
int nbinxyz
 
std::string outputFile_
 
edm::ESHandle< TrackerGeometrypDD
 
double phimax
 
double phimin
 
double pmax
 
double ptmax
 
bool readAOD_
 
float seedEta [10]
 
float seedMomentum [10]
 
float seedPhi [10]
 
float seedPt [10]
 
float seedQ [10]
 
float superclusterEnergy [10]
 
float superclusterEt [10]
 
float superclusterEta [10]
 
float superclusterPhi [10]
 
edm::ESHandle< MagneticFieldtheMagField
 
TrajectoryStateTransform transformer_
 
TTree * tree_
 

Additional Inherited Members

- Public Types inherited from edm::one::EDAnalyzerBase
typedef EDAnalyzerBase ModuleType
 
- Public Types inherited from edm::EDConsumerBase
typedef ProductLabels Labels
 
- Static Public Member Functions inherited from edm::one::EDAnalyzerBase
static const std::string & baseType ()
 
static void fillDescriptions (ConfigurationDescriptions &descriptions)
 
static void prevalidate (ConfigurationDescriptions &descriptions)
 
- Protected Member Functions inherited from edm::EDConsumerBase
template<typename ProductType , BranchType B = InEvent>
EDGetTokenT< ProductType > consumes (edm::InputTag const &tag)
 
EDGetToken consumes (const TypeToGet &id, edm::InputTag const &tag)
 
template<BranchType B>
EDGetToken consumes (TypeToGet const &id, edm::InputTag const &tag)
 
ConsumesCollector consumesCollector ()
 Use a ConsumesCollector to gather consumes information from helper functions. More...
 
template<typename ProductType , BranchType B = InEvent>
void consumesMany ()
 
void consumesMany (const TypeToGet &id)
 
template<BranchType B>
void consumesMany (const TypeToGet &id)
 
template<typename ESProduct , typename ESRecord , Transition Tr = Transition::Event>
auto esConsumes ()
 
template<typename ESProduct , typename ESRecord , Transition Tr = Transition::Event>
auto esConsumes (ESInputTag const &tag)
 
template<typename ProductType , BranchType B = InEvent>
EDGetTokenT< ProductType > mayConsume (edm::InputTag const &tag)
 
EDGetToken mayConsume (const TypeToGet &id, edm::InputTag const &tag)
 
template<BranchType B>
EDGetToken mayConsume (const TypeToGet &id, edm::InputTag const &tag)
 

Detailed Description

Description: GsfElectrons fake electrons analyzer using mc info

Implementation: <Notes on="" implementation>="">

Definition at line 35 of file GsfElectronMCFakeAnalyzer.h.

Constructor & Destructor Documentation

GsfElectronMCFakeAnalyzer::GsfElectronMCFakeAnalyzer ( const edm::ParameterSet conf)
explicit

Definition at line 51 of file GsfElectronMCFakeAnalyzer.cc.

References deltaR_, detamatchmax, detamatchmin, detamax, detamin, dphimatchmax, dphimatchmin, dphimax, dphimin, electronCollection_, eopmax, eopmaxsht, etamax, etamin, fhitsmax, edm::ParameterSet::getParameter(), histfile_, hoemax, hoemin, lhitsmax, matchingObjectCollection_, maxAbsEta_, maxPt_, meemax, meemin, nbindeta, nbindetamatch, nbindetamatch2D, nbindphi, nbindphimatch, nbindphimatch2D, nbineop, nbineop2D, nbineta, nbineta2D, nbinfhits, nbinhoe, nbinlhits, nbinmee, nbinp, nbinp2D, nbinphi, nbinphi2D, nbinpt, nbinpt2D, nbinpteff, nbinxyz, outputFile_, phimax, phimin, pmax, muonDTDigis_cfi::pset, ptmax, readAOD_, and AlCaHLTBitMon_QueryRunRegistry::string.

52  : beamSpot_(conf.getParameter<edm::InputTag>("beamSpot")) {
53  outputFile_ = conf.getParameter<std::string>("outputFile");
54  histfile_ = new TFile(outputFile_.c_str(), "RECREATE");
55  electronCollection_ = conf.getParameter<edm::InputTag>("electronCollection");
56  matchingObjectCollection_ = conf.getParameter<edm::InputTag>("matchingObjectCollection");
57  readAOD_ = conf.getParameter<bool>("readAOD");
58  maxPt_ = conf.getParameter<double>("MaxPt");
59  maxAbsEta_ = conf.getParameter<double>("MaxAbsEta");
60  deltaR_ = conf.getParameter<double>("DeltaR");
61 
62  edm::ParameterSet pset = conf.getParameter<edm::ParameterSet>("HistosConfigurationFake");
63 
64  etamin = pset.getParameter<double>("Etamin");
65  etamax = pset.getParameter<double>("Etamax");
66  phimin = pset.getParameter<double>("Phimin");
67  phimax = pset.getParameter<double>("Phimax");
68  ptmax = pset.getParameter<double>("Ptmax");
69  pmax = pset.getParameter<double>("Pmax");
70  eopmax = pset.getParameter<double>("Eopmax");
71  eopmaxsht = pset.getParameter<double>("Eopmaxsht");
72  detamin = pset.getParameter<double>("Detamin");
73  detamax = pset.getParameter<double>("Detamax");
74  dphimin = pset.getParameter<double>("Dphimin");
75  dphimax = pset.getParameter<double>("Dphimax");
76  detamatchmin = pset.getParameter<double>("Detamatchmin");
77  detamatchmax = pset.getParameter<double>("Detamatchmax");
78  dphimatchmin = pset.getParameter<double>("Dphimatchmin");
79  dphimatchmax = pset.getParameter<double>("Dphimatchmax");
80  fhitsmax = pset.getParameter<double>("Fhitsmax");
81  lhitsmax = pset.getParameter<double>("Lhitsmax");
82  nbineta = pset.getParameter<int>("Nbineta");
83  nbineta2D = pset.getParameter<int>("Nbineta2D");
84  nbinp = pset.getParameter<int>("Nbinp");
85  nbinpt = pset.getParameter<int>("Nbinpt");
86  nbinp2D = pset.getParameter<int>("Nbinp2D");
87  nbinpt2D = pset.getParameter<int>("Nbinpt2D");
88  nbinpteff = pset.getParameter<int>("Nbinpteff");
89  nbinphi = pset.getParameter<int>("Nbinphi");
90  nbinphi2D = pset.getParameter<int>("Nbinphi2D");
91  nbineop = pset.getParameter<int>("Nbineop");
92  nbineop2D = pset.getParameter<int>("Nbineop2D");
93  nbinfhits = pset.getParameter<int>("Nbinfhits");
94  nbinlhits = pset.getParameter<int>("Nbinlhits");
95  nbinxyz = pset.getParameter<int>("Nbinxyz");
96  nbindeta = pset.getParameter<int>("Nbindeta");
97  nbindphi = pset.getParameter<int>("Nbindphi");
98  nbindetamatch = pset.getParameter<int>("Nbindetamatch");
99  nbindphimatch = pset.getParameter<int>("Nbindphimatch");
100  nbindetamatch2D = pset.getParameter<int>("Nbindetamatch2D");
101  nbindphimatch2D = pset.getParameter<int>("Nbindphimatch2D");
102  nbinmee = pset.getParameter<int>("Nbinmee");
103  meemin = pset.getParameter<double>("Meemin");
104  meemax = pset.getParameter<double>("Meemax");
105  nbinhoe = pset.getParameter<int>("Nbinhoe");
106  hoemin = pset.getParameter<double>("Hoemin");
107  hoemax = pset.getParameter<double>("Hoemax");
108 }
T getParameter(std::string const &) const
GsfElectronMCFakeAnalyzer::~GsfElectronMCFakeAnalyzer ( )
override

Definition at line 110 of file GsfElectronMCFakeAnalyzer.cc.

References histfile_.

110  {
111  // do anything here that needs to be done at desctruction time
112  // (e.g. close files, deallocate resources etc.)
113  histfile_->Write();
114  histfile_->Close();
115 }

Member Function Documentation

void GsfElectronMCFakeAnalyzer::analyze ( const edm::Event e,
const edm::EventSetup c 
)
override

Definition at line 1737 of file GsfElectronMCFakeAnalyzer.cc.

References funct::abs(), reco::GsfElectron::ambiguousGsfTracksSize(), beamSpot_, reco::GsfElectron::caloEnergy(), edm::RefToBase< T >::castTo(), reco::LeafCandidate::charge(), reco::GsfElectron::classification(), gather_cfg::cout, ztail::d, reco::GsfElectron::deltaEtaEleClusterTrackAtCalo(), reco::GsfElectron::deltaEtaSeedClusterTrackAtCalo(), reco::GsfElectron::deltaEtaSuperClusterTrackAtVtx(), reco::GsfElectron::deltaPhiEleClusterTrackAtCalo(), reco::GsfElectron::deltaPhiSeedClusterTrackAtCalo(), reco::GsfElectron::deltaPhiSuperClusterTrackAtVtx(), PbPb_ZMuSkimMuonDPG_cff::deltaR, deltaR_, reco::GsfElectron::dr03EcalRecHitSumEt(), reco::GsfElectron::dr03HcalDepth1TowerSumEt(), reco::GsfElectron::dr03HcalDepth2TowerSumEt(), reco::GsfElectron::dr03TkSumPt(), reco::GsfElectron::dr04EcalRecHitSumEt(), reco::GsfElectron::dr04HcalDepth1TowerSumEt(), reco::GsfElectron::dr04HcalDepth2TowerSumEt(), reco::GsfElectron::dr04TkSumPt(), reco::GsfElectron::ecalDrivenSeed(), reco::GsfElectron::eEleClusterOverPout(), electronCollection_, reco::GsfElectron::eSeedClusterOverP(), reco::GsfElectron::eSeedClusterOverPout(), reco::GsfElectron::eSuperClusterOverP(), reco::LeafCandidate::eta(), reco::GsfElectron::fbrem(), ttbarCategorization_cff::genJets, edm::Event::getByLabel(), electronIsolatorFromEffectiveArea_cfi::gsfElectrons, reco::GsfElectron::gsfTrack(), h_ele_ambiguousTracks, h_ele_ambiguousTracksVsEta, h_ele_ambiguousTracksVsPhi, h_ele_ambiguousTracksVsPt, h_ele_charge, h_ele_chargeVsEta, h_ele_chargeVsPhi, h_ele_chargeVsPt, h_ele_chi2, h_ele_chi2VsEta, h_ele_chi2VsPhi, h_ele_chi2VsPt, h_ele_classes, h_ele_dEtaCl_propOut, h_ele_dEtaCl_propOut_all, h_ele_dEtaCl_propOut_barrel, h_ele_dEtaCl_propOut_eg, h_ele_dEtaCl_propOut_eg_barrel, h_ele_dEtaCl_propOut_eg_endcaps, h_ele_dEtaCl_propOut_endcaps, h_ele_dEtaClVsEta_propOut, h_ele_dEtaClVsPhi_propOut, h_ele_dEtaClVsPt_propOut, h_ele_dEtaEleCl_propOut, h_ele_dEtaEleCl_propOut_barrel, h_ele_dEtaEleCl_propOut_eg, h_ele_dEtaEleCl_propOut_eg_barrel, h_ele_dEtaEleCl_propOut_eg_endcaps, h_ele_dEtaEleCl_propOut_endcaps, h_ele_dEtaEleClVsEta_propOut, h_ele_dEtaEleClVsPhi_propOut, h_ele_dEtaEleClVsPt_propOut, h_ele_dEtaSc_propVtx, h_ele_dEtaSc_propVtx_all, h_ele_dEtaSc_propVtx_barrel, h_ele_dEtaSc_propVtx_eg, h_ele_dEtaSc_propVtx_eg_barrel, h_ele_dEtaSc_propVtx_eg_endcaps, h_ele_dEtaSc_propVtx_endcaps, h_ele_dEtaScVsEta_propVtx, h_ele_dEtaScVsPhi_propVtx, h_ele_dEtaScVsPt_propVtx, h_ele_dPhiCl_propOut, h_ele_dPhiCl_propOut_all, h_ele_dPhiCl_propOut_barrel, h_ele_dPhiCl_propOut_eg, h_ele_dPhiCl_propOut_eg_barrel, h_ele_dPhiCl_propOut_eg_endcaps, h_ele_dPhiCl_propOut_endcaps, h_ele_dPhiClVsEta_propOut, h_ele_dPhiClVsPhi_propOut, h_ele_dPhiClVsPt_propOut, h_ele_dPhiEleCl_propOut, h_ele_dPhiEleCl_propOut_barrel, h_ele_dPhiEleCl_propOut_eg, h_ele_dPhiEleCl_propOut_eg_barrel, h_ele_dPhiEleCl_propOut_eg_endcaps, h_ele_dPhiEleCl_propOut_endcaps, h_ele_dPhiEleClVsEta_propOut, h_ele_dPhiEleClVsPhi_propOut, h_ele_dPhiEleClVsPt_propOut, h_ele_dPhiSc_propVtx, h_ele_dPhiSc_propVtx_all, h_ele_dPhiSc_propVtx_barrel, h_ele_dPhiSc_propVtx_eg, h_ele_dPhiSc_propVtx_eg_barrel, h_ele_dPhiSc_propVtx_eg_endcaps, h_ele_dPhiSc_propVtx_endcaps, h_ele_dPhiScVsEta_propVtx, h_ele_dPhiScVsPhi_propVtx, h_ele_dPhiScVsPt_propVtx, h_ele_E2mnE1vsMee_all, h_ele_E2mnE1vsMee_egeg_all, h_ele_ecalRecHitSumEt_dr03, h_ele_ecalRecHitSumEt_dr04, h_ele_EeleOPout, h_ele_EeleOPout_all, h_ele_EeleOPout_barrel, h_ele_EeleOPout_eg, h_ele_EeleOPout_eg_barrel, h_ele_EeleOPout_eg_endcaps, h_ele_EeleOPout_endcaps, h_ele_EeleOPoutVsE, h_ele_EeleOPoutVsEta, h_ele_EeleOPoutVsPhi, h_ele_EoP, h_ele_EoP_barrel, h_ele_EoP_eg, h_ele_EoP_eg_barrel, h_ele_EoP_eg_endcaps, h_ele_EoP_endcaps, h_ele_EoPout, h_ele_EoPout_all, h_ele_EoPout_barrel, h_ele_EoPout_eg, h_ele_EoPout_eg_barrel, h_ele_EoPout_eg_endcaps, h_ele_EoPout_endcaps, h_ele_EoPoutVsE, h_ele_EoPoutVsEta, h_ele_EoPoutVsPhi, h_ele_EoPVsE, h_ele_EoPVsEta, h_ele_EoPVsPhi, h_ele_EoverP_all, h_ele_EseedOP, h_ele_EseedOP_all, h_ele_EseedOP_barrel, h_ele_EseedOP_eg, h_ele_EseedOP_eg_barrel, h_ele_EseedOP_eg_endcaps, h_ele_EseedOP_endcaps, h_ele_EseedOPVsE, h_ele_EseedOPVsEta, h_ele_EseedOPVsPhi, h_ele_eta, h_ele_eta_bbrem, h_ele_eta_golden, h_ele_eta_shower, h_ele_EtaMnEtamatchingObject, h_ele_EtaMnEtamatchingObjectVsEta, h_ele_EtaMnEtamatchingObjectVsPhi, h_ele_EtaMnEtamatchingObjectVsPt, h_ele_fbrem, h_ele_fbremVsEta_mean, h_ele_fbremVsEta_mode, h_ele_foundHits, h_ele_foundHitsVsEta, h_ele_foundHitsVsPhi, h_ele_foundHitsVsPt, h_ele_hcalDepth1TowerSumEt_dr03, h_ele_hcalDepth1TowerSumEt_dr04, h_ele_hcalDepth2TowerSumEt_dr03, h_ele_hcalDepth2TowerSumEt_dr04, h_ele_HoE, h_ele_HoE_all, h_ele_HoE_barrel, h_ele_HoE_eg, h_ele_HoE_eg_barrel, h_ele_HoE_eg_endcaps, h_ele_HoE_endcaps, h_ele_HoE_fiducial, h_ele_HoEVsE, h_ele_HoEVsEta, h_ele_HoEVsPhi, h_ele_lostHits, h_ele_lostHitsVsEta, h_ele_lostHitsVsPhi, h_ele_lostHitsVsPt, h_ele_matchingObjectAbsEta_matched, h_ele_matchingObjectEta_matched, h_ele_matchingObjectPhi_matched, h_ele_matchingObjectPt_matched, h_ele_matchingObjectZ_matched, h_ele_mee_all, h_ele_mee_os, h_ele_mva, h_ele_outerP, h_ele_outerP_mode, h_ele_outerPt, h_ele_outerPt_mode, h_ele_outerPtVsEta_mode, h_ele_outerPtVsPhi_mode, h_ele_outerPtVsPt_mode, h_ele_outerPVsEta_mode, h_ele_PhiMnPhimatchingObject, h_ele_PhiMnPhimatchingObject2, h_ele_PhiMnPhimatchingObjectVsEta, h_ele_PhiMnPhimatchingObjectVsPhi, h_ele_PhiMnPhimatchingObjectVsPt, h_ele_PinMnPout, h_ele_PinMnPout_mode, h_ele_PinMnPoutVsChi2_mode, h_ele_PinMnPoutVsE_mode, h_ele_PinMnPoutVsEta_mode, h_ele_PinMnPoutVsPhi_mode, h_ele_PinMnPoutVsPt_mode, h_ele_PinVsPoutGolden_mean, h_ele_PinVsPoutGolden_mode, h_ele_PinVsPoutShowering_mean, h_ele_PinVsPoutShowering_mode, h_ele_PoPmatchingObject, h_ele_PoPmatchingObject_barrel, h_ele_PoPmatchingObject_endcaps, h_ele_PoPmatchingObjectVsEta, h_ele_PoPmatchingObjectVsPhi, h_ele_PoPmatchingObjectVsPt, h_ele_provenance, h_ele_PtinVsPtoutGolden_mean, h_ele_PtinVsPtoutGolden_mode, h_ele_PtinVsPtoutShowering_mean, h_ele_PtinVsPtoutShowering_mode, h_ele_seed_dphi2_, h_ele_seed_dphi2VsEta_, h_ele_seed_dphi2VsPt_, h_ele_seed_drz2_, h_ele_seed_drz2VsEta_, h_ele_seed_drz2VsPt_, h_ele_seed_subdet2_, h_ele_TIP_all, h_ele_tkSumPt_dr03, h_ele_tkSumPt_dr04, h_ele_vertexEta, h_ele_vertexEta_all, h_ele_vertexEtaVsPhi, h_ele_vertexP, h_ele_vertexPhi, h_ele_vertexPt, h_ele_vertexPt_all, h_ele_vertexPtVsEta, h_ele_vertexPtVsPhi, h_ele_vertexTIP, h_ele_vertexTIPVsEta, h_ele_vertexTIPVsPhi, h_ele_vertexTIPVsPt, h_ele_vertexX, h_ele_vertexY, h_ele_vertexZ, h_matchingObjectAbsEta, h_matchingObjectEta, h_matchingObjectNum, h_matchingObjectP, h_matchingObjectPhi, h_matchingObjectPt, h_matchingObjectZ, reco::GsfElectron::hadronicOverEm(), histNum_, histSclE1x5_, histSclE1x5_barrel_, histSclE1x5_endcaps_, histSclE2x5max_, histSclE2x5max_barrel_, histSclE2x5max_endcaps_, histSclE5x5_, histSclE5x5_barrel_, histSclE5x5_endcaps_, histSclEn_, histSclEoEmatchingObject_barrel, histSclEoEmatchingObject_endcaps, histSclEt_, histSclEta_, histSclEtaVsPhi_, histSclEtVsEta_, histSclEtVsPhi_, histSclPhi_, histSclSigIEtaIEta_, histSclSigIEtaIEta_barrel_, histSclSigIEtaIEta_endcaps_, edm::EventBase::id(), reco::GsfElectron::isEB(), reco::GsfElectron::isEBEEGap(), reco::GsfElectron::isEBEtaGap(), reco::GsfElectron::isEBPhiGap(), reco::GsfElectron::isEE(), reco::GsfElectron::isEEDeeGap(), reco::GsfElectron::isEERingGap(), matchingObjectCollection_, maxAbsEta_, maxPt_, reco::GsfElectron::mva_e_pi(), reco::LeafCandidate::p(), reco::GsfElectron::parentSuperCluster(), reco::LeafCandidate::phi(), pi, reco::BeamSpot::position(), funct::pow(), edm::Handle< T >::product(), reco::LeafCandidate::pt(), reco::LeafCandidate::py(), dttmaxenums::R, readAOD_, reco::GsfElectron::scE1x5(), reco::GsfElectron::scE2x5Max(), reco::GsfElectron::scE5x5(), reco::GsfElectron::scSigmaIEtaIEta(), SurveyInfoScenario_cff::seed, mathSSE::sqrt(), reco::GsfElectron::superCluster(), reco::GsfElectron::trackerDrivenSeed(), reco::GsfElectron::trackMomentumAtVtx(), reco::GsfElectron::trackMomentumOut(), and reco::LeafCandidate::vertex().

1737  {
1738  std::cout << "analyzing new event " << std::endl;
1739 
1740  // get reco electrons
1742  iEvent.getByLabel(electronCollection_, gsfElectrons);
1743  edm::LogInfo("") << "\n\n =================> Treating event " << iEvent.id() << " Number of electrons "
1744  << gsfElectrons.product()->size();
1745 
1746  // get gen jets
1748  iEvent.getByLabel(matchingObjectCollection_, genJets);
1749 
1750  // get the beamspot from the Event:
1751  edm::Handle<reco::BeamSpot> recoBeamSpotHandle;
1752  iEvent.getByLabel(beamSpot_, recoBeamSpotHandle);
1753  const BeamSpot bs = *recoBeamSpotHandle;
1754 
1755  histNum_->Fill((*gsfElectrons).size());
1756 
1757  // all rec electrons
1758  for (reco::GsfElectronCollection::const_iterator gsfIter = gsfElectrons->begin(); gsfIter != gsfElectrons->end();
1759  gsfIter++) {
1760  // preselect electrons
1761  if (gsfIter->pt() > maxPt_ || std::abs(gsfIter->eta()) > maxAbsEta_)
1762  continue;
1763  h_ele_EoverP_all->Fill(gsfIter->eSuperClusterOverP());
1764  h_ele_EseedOP_all->Fill(gsfIter->eSeedClusterOverP());
1765  h_ele_EoPout_all->Fill(gsfIter->eSeedClusterOverPout());
1766  h_ele_EeleOPout_all->Fill(gsfIter->eEleClusterOverPout());
1767  h_ele_dEtaSc_propVtx_all->Fill(gsfIter->deltaEtaSuperClusterTrackAtVtx());
1768  h_ele_dPhiSc_propVtx_all->Fill(gsfIter->deltaPhiSuperClusterTrackAtVtx());
1769  h_ele_dEtaCl_propOut_all->Fill(gsfIter->deltaEtaSeedClusterTrackAtCalo());
1770  h_ele_dPhiCl_propOut_all->Fill(gsfIter->deltaPhiSeedClusterTrackAtCalo());
1771  h_ele_HoE_all->Fill(gsfIter->hadronicOverEm());
1772  double d = gsfIter->vertex().x() * gsfIter->vertex().x() + gsfIter->vertex().y() * gsfIter->vertex().y();
1773  h_ele_TIP_all->Fill(sqrt(d));
1774  h_ele_vertexEta_all->Fill(gsfIter->eta());
1775  h_ele_vertexPt_all->Fill(gsfIter->pt());
1776  float enrj1 = gsfIter->superCluster()->energy();
1777  // mee
1778  for (reco::GsfElectronCollection::const_iterator gsfIter2 = gsfIter + 1; gsfIter2 != gsfElectrons->end();
1779  gsfIter2++) {
1780  math::XYZTLorentzVector p12 = (*gsfIter).p4() + (*gsfIter2).p4();
1781  float mee2 = p12.Dot(p12);
1782  h_ele_mee_all->Fill(sqrt(mee2));
1783  float enrj2 = gsfIter2->superCluster()->energy();
1784  h_ele_E2mnE1vsMee_all->Fill(sqrt(mee2), enrj2 - enrj1);
1785  if (gsfIter->ecalDrivenSeed() && gsfIter2->ecalDrivenSeed())
1786  h_ele_E2mnE1vsMee_egeg_all->Fill(sqrt(mee2), enrj2 - enrj1);
1787  if (gsfIter->charge() * gsfIter2->charge() < 0.)
1788  h_ele_mee_os->Fill(sqrt(mee2));
1789  }
1790  }
1791 
1792  // association matching object-reco electrons
1793  int matchingObjectNum = 0;
1794 
1795  for (reco::GenJetCollection::const_iterator moIter = genJets->begin(); moIter != genJets->end(); ++moIter) {
1796  // number of matching objects
1797  matchingObjectNum++;
1798 
1799  if (moIter->energy() / cosh(moIter->eta()) > maxPt_ || std::abs(moIter->eta()) > maxAbsEta_)
1800  continue;
1801 
1802  // suppress the endcaps
1803  //if (std::abs(moIter->eta()) > 1.5) continue;
1804  // select central z
1805  //if ( std::abs((*mcIter)->production_vertex()->position().z())>50.) continue;
1806 
1807  h_matchingObjectEta->Fill(moIter->eta());
1808  h_matchingObjectAbsEta->Fill(std::abs(moIter->eta()));
1809  h_matchingObjectP->Fill(moIter->energy());
1810  h_matchingObjectPt->Fill(moIter->energy() / cosh(moIter->eta()));
1811  h_matchingObjectPhi->Fill(moIter->phi());
1812  h_matchingObjectZ->Fill(moIter->vz());
1813 
1814  // looking for the best matching gsf electron
1815  bool okGsfFound = false;
1816  double gsfOkRatio = 999999.;
1817 
1818  // find best matched electron
1819  reco::GsfElectron bestGsfElectron;
1820  for (reco::GsfElectronCollection::const_iterator gsfIter = gsfElectrons->begin(); gsfIter != gsfElectrons->end();
1821  gsfIter++) {
1822  double dphi = gsfIter->phi() - moIter->phi();
1823  if (std::abs(dphi) > CLHEP::pi)
1824  dphi = dphi < 0 ? (CLHEP::twopi) + dphi : dphi - CLHEP::twopi;
1825  double deltaR = sqrt(std::pow((gsfIter->eta() - moIter->eta()), 2) + std::pow(dphi, 2));
1826  if (deltaR < deltaR_) {
1827  //if ( (genPc->pdg_id() == 11) && (gsfIter->charge() < 0.) || (genPc->pdg_id() == -11) &&
1828  //(gsfIter->charge() > 0.) ){
1829  double tmpGsfRatio = gsfIter->p() / moIter->energy();
1830  if (std::abs(tmpGsfRatio - 1) < std::abs(gsfOkRatio - 1)) {
1831  gsfOkRatio = tmpGsfRatio;
1832  bestGsfElectron = *gsfIter;
1833  okGsfFound = true;
1834  }
1835  //}
1836  }
1837  } // loop over rec ele to look for the best one
1838 
1839  // analysis when the matching object is matched by a rec electron
1840  if (okGsfFound) {
1841  // electron related distributions
1842  h_ele_charge->Fill(bestGsfElectron.charge());
1843  h_ele_chargeVsEta->Fill(bestGsfElectron.eta(), bestGsfElectron.charge());
1844  h_ele_chargeVsPhi->Fill(bestGsfElectron.phi(), bestGsfElectron.charge());
1845  h_ele_chargeVsPt->Fill(bestGsfElectron.pt(), bestGsfElectron.charge());
1846  h_ele_vertexP->Fill(bestGsfElectron.p());
1847  h_ele_vertexPt->Fill(bestGsfElectron.pt());
1848  h_ele_vertexPtVsEta->Fill(bestGsfElectron.eta(), bestGsfElectron.pt());
1849  h_ele_vertexPtVsPhi->Fill(bestGsfElectron.phi(), bestGsfElectron.pt());
1850  h_ele_vertexEta->Fill(bestGsfElectron.eta());
1851  // generated distributions for matched electrons
1852  h_ele_matchingObjectPt_matched->Fill(moIter->energy() / cosh(moIter->eta()));
1853  h_ele_matchingObjectPhi_matched->Fill(moIter->phi());
1854  h_ele_matchingObjectAbsEta_matched->Fill(std::abs(moIter->eta()));
1855  h_ele_matchingObjectEta_matched->Fill(moIter->eta());
1856  h_ele_vertexEtaVsPhi->Fill(bestGsfElectron.phi(), bestGsfElectron.eta());
1857  h_ele_vertexPhi->Fill(bestGsfElectron.phi());
1858  h_ele_vertexX->Fill(bestGsfElectron.vertex().x());
1859  h_ele_vertexY->Fill(bestGsfElectron.vertex().y());
1860  h_ele_vertexZ->Fill(bestGsfElectron.vertex().z());
1861  h_ele_matchingObjectZ_matched->Fill(moIter->vz());
1862  double d =
1863  (bestGsfElectron.vertex().x() - bs.position().x()) * (bestGsfElectron.vertex().x() - bs.position().x()) +
1864  (bestGsfElectron.vertex().y() - bs.position().y()) * (bestGsfElectron.vertex().y() - bs.position().y());
1865  d = sqrt(d);
1866  h_ele_vertexTIP->Fill(d);
1867  h_ele_vertexTIPVsEta->Fill(bestGsfElectron.eta(), d);
1868  h_ele_vertexTIPVsPhi->Fill(bestGsfElectron.phi(), d);
1869  h_ele_vertexTIPVsPt->Fill(bestGsfElectron.pt(), d);
1870  h_ele_EtaMnEtamatchingObject->Fill(bestGsfElectron.eta() - moIter->eta());
1871  h_ele_EtaMnEtamatchingObjectVsEta->Fill(bestGsfElectron.eta(), bestGsfElectron.eta() - moIter->eta());
1872  h_ele_EtaMnEtamatchingObjectVsPhi->Fill(bestGsfElectron.phi(), bestGsfElectron.eta() - moIter->eta());
1873  h_ele_EtaMnEtamatchingObjectVsPt->Fill(bestGsfElectron.pt(), bestGsfElectron.eta() - moIter->eta());
1874  h_ele_PhiMnPhimatchingObject->Fill(bestGsfElectron.phi() - moIter->phi());
1875  h_ele_PhiMnPhimatchingObject2->Fill(bestGsfElectron.phi() - moIter->phi());
1876  h_ele_PhiMnPhimatchingObjectVsEta->Fill(bestGsfElectron.eta(), bestGsfElectron.phi() - moIter->phi());
1877  h_ele_PhiMnPhimatchingObjectVsPhi->Fill(bestGsfElectron.phi(), bestGsfElectron.phi() - moIter->phi());
1878  h_ele_PhiMnPhimatchingObjectVsPt->Fill(bestGsfElectron.pt(), bestGsfElectron.phi() - moIter->phi());
1879  h_ele_PoPmatchingObject->Fill(bestGsfElectron.p() / moIter->energy());
1880  h_ele_PoPmatchingObjectVsEta->Fill(bestGsfElectron.eta(), bestGsfElectron.p() / moIter->energy());
1881  h_ele_PoPmatchingObjectVsPhi->Fill(bestGsfElectron.phi(), bestGsfElectron.p() / moIter->energy());
1882  h_ele_PoPmatchingObjectVsPt->Fill(bestGsfElectron.py(), bestGsfElectron.p() / moIter->energy());
1883  if (bestGsfElectron.isEB())
1884  h_ele_PoPmatchingObject_barrel->Fill(bestGsfElectron.p() / moIter->energy());
1885  if (bestGsfElectron.isEE())
1886  h_ele_PoPmatchingObject_endcaps->Fill(bestGsfElectron.p() / moIter->energy());
1887 
1888  // supercluster related distributions
1889  reco::SuperClusterRef sclRef = bestGsfElectron.superCluster();
1890  if (!bestGsfElectron.ecalDrivenSeed() && bestGsfElectron.trackerDrivenSeed())
1891  sclRef = bestGsfElectron.parentSuperCluster();
1892  histSclEn_->Fill(sclRef->energy());
1893  double R = TMath::Sqrt(sclRef->x() * sclRef->x() + sclRef->y() * sclRef->y() + sclRef->z() * sclRef->z());
1894  double Rt = TMath::Sqrt(sclRef->x() * sclRef->x() + sclRef->y() * sclRef->y());
1895  histSclEt_->Fill(sclRef->energy() * (Rt / R));
1896  histSclEtVsEta_->Fill(sclRef->eta(), sclRef->energy() * (Rt / R));
1897  histSclEtVsPhi_->Fill(sclRef->phi(), sclRef->energy() * (Rt / R));
1898  if (bestGsfElectron.isEB())
1899  histSclEoEmatchingObject_barrel->Fill(sclRef->energy() / moIter->energy());
1900  if (bestGsfElectron.isEE())
1901  histSclEoEmatchingObject_endcaps->Fill(sclRef->energy() / moIter->energy());
1902  histSclEta_->Fill(sclRef->eta());
1903  histSclEtaVsPhi_->Fill(sclRef->phi(), sclRef->eta());
1904  histSclPhi_->Fill(sclRef->phi());
1905  histSclSigIEtaIEta_->Fill(bestGsfElectron.scSigmaIEtaIEta());
1906  if (bestGsfElectron.isEB())
1907  histSclSigIEtaIEta_barrel_->Fill(bestGsfElectron.scSigmaIEtaIEta());
1908  if (bestGsfElectron.isEE())
1909  histSclSigIEtaIEta_endcaps_->Fill(bestGsfElectron.scSigmaIEtaIEta());
1910  histSclE1x5_->Fill(bestGsfElectron.scE1x5());
1911  if (bestGsfElectron.isEB())
1912  histSclE1x5_barrel_->Fill(bestGsfElectron.scE1x5());
1913  if (bestGsfElectron.isEE())
1914  histSclE1x5_endcaps_->Fill(bestGsfElectron.scE1x5());
1915  histSclE2x5max_->Fill(bestGsfElectron.scE2x5Max());
1916  if (bestGsfElectron.isEB())
1917  histSclE2x5max_barrel_->Fill(bestGsfElectron.scE2x5Max());
1918  if (bestGsfElectron.isEE())
1919  histSclE2x5max_endcaps_->Fill(bestGsfElectron.scE2x5Max());
1920  histSclE5x5_->Fill(bestGsfElectron.scE5x5());
1921  if (bestGsfElectron.isEB())
1922  histSclE5x5_barrel_->Fill(bestGsfElectron.scE5x5());
1923  if (bestGsfElectron.isEE())
1924  histSclE5x5_endcaps_->Fill(bestGsfElectron.scE5x5());
1925 
1926  // track related distributions
1927  h_ele_ambiguousTracks->Fill(bestGsfElectron.ambiguousGsfTracksSize());
1928  h_ele_ambiguousTracksVsEta->Fill(bestGsfElectron.eta(), bestGsfElectron.ambiguousGsfTracksSize());
1929  h_ele_ambiguousTracksVsPhi->Fill(bestGsfElectron.phi(), bestGsfElectron.ambiguousGsfTracksSize());
1930  h_ele_ambiguousTracksVsPt->Fill(bestGsfElectron.pt(), bestGsfElectron.ambiguousGsfTracksSize());
1931  if (!readAOD_) { // track extra does not exist in AOD
1932  h_ele_foundHits->Fill(bestGsfElectron.gsfTrack()->numberOfValidHits());
1933  h_ele_foundHitsVsEta->Fill(bestGsfElectron.eta(), bestGsfElectron.gsfTrack()->numberOfValidHits());
1934  h_ele_foundHitsVsPhi->Fill(bestGsfElectron.phi(), bestGsfElectron.gsfTrack()->numberOfValidHits());
1935  h_ele_foundHitsVsPt->Fill(bestGsfElectron.pt(), bestGsfElectron.gsfTrack()->numberOfValidHits());
1936  h_ele_lostHits->Fill(bestGsfElectron.gsfTrack()->numberOfLostHits());
1937  h_ele_lostHitsVsEta->Fill(bestGsfElectron.eta(), bestGsfElectron.gsfTrack()->numberOfLostHits());
1938  h_ele_lostHitsVsPhi->Fill(bestGsfElectron.phi(), bestGsfElectron.gsfTrack()->numberOfLostHits());
1939  h_ele_lostHitsVsPt->Fill(bestGsfElectron.pt(), bestGsfElectron.gsfTrack()->numberOfLostHits());
1940  h_ele_chi2->Fill(bestGsfElectron.gsfTrack()->normalizedChi2());
1941  h_ele_chi2VsEta->Fill(bestGsfElectron.eta(), bestGsfElectron.gsfTrack()->normalizedChi2());
1942  h_ele_chi2VsPhi->Fill(bestGsfElectron.phi(), bestGsfElectron.gsfTrack()->normalizedChi2());
1943  h_ele_chi2VsPt->Fill(bestGsfElectron.pt(), bestGsfElectron.gsfTrack()->normalizedChi2());
1944  }
1945  // from gsf track interface, hence using mean
1946  if (!readAOD_) { // track extra does not exist in AOD
1947  h_ele_PinMnPout->Fill(bestGsfElectron.gsfTrack()->innerMomentum().R() -
1948  bestGsfElectron.gsfTrack()->outerMomentum().R());
1949  h_ele_outerP->Fill(bestGsfElectron.gsfTrack()->outerMomentum().R());
1950  h_ele_outerPt->Fill(bestGsfElectron.gsfTrack()->outerMomentum().Rho());
1951  }
1952  // from electron interface, hence using mode
1953  h_ele_PinMnPout_mode->Fill(bestGsfElectron.trackMomentumAtVtx().R() - bestGsfElectron.trackMomentumOut().R());
1955  bestGsfElectron.eta(), bestGsfElectron.trackMomentumAtVtx().R() - bestGsfElectron.trackMomentumOut().R());
1957  bestGsfElectron.phi(), bestGsfElectron.trackMomentumAtVtx().R() - bestGsfElectron.trackMomentumOut().R());
1958  h_ele_PinMnPoutVsPt_mode->Fill(bestGsfElectron.pt(),
1959  bestGsfElectron.trackMomentumAtVtx().R() - bestGsfElectron.trackMomentumOut().R());
1960  h_ele_PinMnPoutVsE_mode->Fill(bestGsfElectron.caloEnergy(),
1961  bestGsfElectron.trackMomentumAtVtx().R() - bestGsfElectron.trackMomentumOut().R());
1962  if (!readAOD_) // track extra does not exist in AOD
1964  bestGsfElectron.gsfTrack()->normalizedChi2(),
1965  bestGsfElectron.trackMomentumAtVtx().R() - bestGsfElectron.trackMomentumOut().R());
1966  h_ele_outerP_mode->Fill(bestGsfElectron.trackMomentumOut().R());
1967  h_ele_outerPVsEta_mode->Fill(bestGsfElectron.eta(), bestGsfElectron.trackMomentumOut().R());
1968  h_ele_outerPt_mode->Fill(bestGsfElectron.trackMomentumOut().Rho());
1969  h_ele_outerPtVsEta_mode->Fill(bestGsfElectron.eta(), bestGsfElectron.trackMomentumOut().Rho());
1970  h_ele_outerPtVsPhi_mode->Fill(bestGsfElectron.phi(), bestGsfElectron.trackMomentumOut().Rho());
1971  h_ele_outerPtVsPt_mode->Fill(bestGsfElectron.pt(), bestGsfElectron.trackMomentumOut().Rho());
1972 
1973  if (!readAOD_) { // track extra does not exist in AOD
1974  edm::RefToBase<TrajectorySeed> seed = bestGsfElectron.gsfTrack()->extra()->seedRef();
1975  ElectronSeedRef elseed = seed.castTo<ElectronSeedRef>();
1976  h_ele_seed_dphi2_->Fill(elseed->dPhiNeg(1));
1977  h_ele_seed_dphi2VsEta_->Fill(bestGsfElectron.eta(), elseed->dPhiNeg(1));
1978  h_ele_seed_dphi2VsPt_->Fill(bestGsfElectron.pt(), elseed->dPhiNeg(1));
1979  h_ele_seed_drz2_->Fill(elseed->dRZNeg(1));
1980  h_ele_seed_drz2VsEta_->Fill(bestGsfElectron.eta(), elseed->dRZNeg(1));
1981  h_ele_seed_drz2VsPt_->Fill(bestGsfElectron.pt(), elseed->dRZNeg(1));
1982  h_ele_seed_subdet2_->Fill(elseed->subDet(1));
1983  }
1984  // match distributions
1985  h_ele_EoP->Fill(bestGsfElectron.eSuperClusterOverP());
1986  if (bestGsfElectron.ecalDrivenSeed())
1987  h_ele_EoP_eg->Fill(bestGsfElectron.eSuperClusterOverP());
1988  if (bestGsfElectron.isEB())
1989  h_ele_EoP_barrel->Fill(bestGsfElectron.eSuperClusterOverP());
1990  if (bestGsfElectron.isEB() && bestGsfElectron.ecalDrivenSeed())
1991  h_ele_EoP_eg_barrel->Fill(bestGsfElectron.eSuperClusterOverP());
1992  if (bestGsfElectron.isEE())
1993  h_ele_EoP_endcaps->Fill(bestGsfElectron.eSuperClusterOverP());
1994  if (bestGsfElectron.isEE() && bestGsfElectron.ecalDrivenSeed())
1995  h_ele_EoP_eg_endcaps->Fill(bestGsfElectron.eSuperClusterOverP());
1996  h_ele_EoPVsEta->Fill(bestGsfElectron.eta(), bestGsfElectron.eSuperClusterOverP());
1997  h_ele_EoPVsPhi->Fill(bestGsfElectron.phi(), bestGsfElectron.eSuperClusterOverP());
1998  h_ele_EoPVsE->Fill(bestGsfElectron.caloEnergy(), bestGsfElectron.eSuperClusterOverP());
1999  h_ele_EseedOP->Fill(bestGsfElectron.eSeedClusterOverP());
2000  if (bestGsfElectron.ecalDrivenSeed())
2001  h_ele_EseedOP_eg->Fill(bestGsfElectron.eSeedClusterOverP());
2002  if (bestGsfElectron.isEB())
2003  h_ele_EseedOP_barrel->Fill(bestGsfElectron.eSeedClusterOverP());
2004  if (bestGsfElectron.isEB() && bestGsfElectron.ecalDrivenSeed())
2005  h_ele_EseedOP_eg_barrel->Fill(bestGsfElectron.eSeedClusterOverP());
2006  if (bestGsfElectron.isEE())
2007  h_ele_EseedOP_endcaps->Fill(bestGsfElectron.eSeedClusterOverP());
2008  if (bestGsfElectron.isEE() && bestGsfElectron.ecalDrivenSeed())
2009  h_ele_EseedOP_eg_endcaps->Fill(bestGsfElectron.eSeedClusterOverP());
2010  h_ele_EseedOPVsEta->Fill(bestGsfElectron.eta(), bestGsfElectron.eSeedClusterOverP());
2011  h_ele_EseedOPVsPhi->Fill(bestGsfElectron.phi(), bestGsfElectron.eSeedClusterOverP());
2012  h_ele_EseedOPVsE->Fill(bestGsfElectron.caloEnergy(), bestGsfElectron.eSeedClusterOverP());
2013  h_ele_EoPout->Fill(bestGsfElectron.eSeedClusterOverPout());
2014  if (bestGsfElectron.ecalDrivenSeed())
2015  h_ele_EoPout_eg->Fill(bestGsfElectron.eSeedClusterOverPout());
2016  if (bestGsfElectron.isEB())
2017  h_ele_EoPout_barrel->Fill(bestGsfElectron.eSeedClusterOverPout());
2018  if (bestGsfElectron.isEB() && bestGsfElectron.ecalDrivenSeed())
2019  h_ele_EoPout_eg_barrel->Fill(bestGsfElectron.eSeedClusterOverPout());
2020  if (bestGsfElectron.isEE())
2021  h_ele_EoPout_endcaps->Fill(bestGsfElectron.eSeedClusterOverPout());
2022  if (bestGsfElectron.isEE() && bestGsfElectron.ecalDrivenSeed())
2023  h_ele_EoPout_eg_endcaps->Fill(bestGsfElectron.eSeedClusterOverPout());
2024  h_ele_EoPoutVsEta->Fill(bestGsfElectron.eta(), bestGsfElectron.eSeedClusterOverPout());
2025  h_ele_EoPoutVsPhi->Fill(bestGsfElectron.phi(), bestGsfElectron.eSeedClusterOverPout());
2026  h_ele_EoPoutVsE->Fill(bestGsfElectron.caloEnergy(), bestGsfElectron.eSeedClusterOverPout());
2027  h_ele_EeleOPout->Fill(bestGsfElectron.eEleClusterOverPout());
2028  if (bestGsfElectron.ecalDrivenSeed())
2029  h_ele_EeleOPout_eg->Fill(bestGsfElectron.eEleClusterOverPout());
2030  if (bestGsfElectron.isEB())
2031  h_ele_EeleOPout_barrel->Fill(bestGsfElectron.eEleClusterOverPout());
2032  if (bestGsfElectron.isEB() && bestGsfElectron.ecalDrivenSeed())
2033  h_ele_EeleOPout_eg_barrel->Fill(bestGsfElectron.eEleClusterOverPout());
2034  if (bestGsfElectron.isEE())
2035  h_ele_EeleOPout_endcaps->Fill(bestGsfElectron.eEleClusterOverPout());
2036  if (bestGsfElectron.isEE() && bestGsfElectron.ecalDrivenSeed())
2037  h_ele_EeleOPout_eg_endcaps->Fill(bestGsfElectron.eEleClusterOverPout());
2038  h_ele_EeleOPoutVsEta->Fill(bestGsfElectron.eta(), bestGsfElectron.eEleClusterOverPout());
2039  h_ele_EeleOPoutVsPhi->Fill(bestGsfElectron.phi(), bestGsfElectron.eEleClusterOverPout());
2040  h_ele_EeleOPoutVsE->Fill(bestGsfElectron.caloEnergy(), bestGsfElectron.eEleClusterOverPout());
2041  h_ele_dEtaSc_propVtx->Fill(bestGsfElectron.deltaEtaSuperClusterTrackAtVtx());
2042  if (bestGsfElectron.ecalDrivenSeed())
2044  if (bestGsfElectron.isEB())
2046  if (bestGsfElectron.isEB() && bestGsfElectron.ecalDrivenSeed())
2048  if (bestGsfElectron.isEE())
2050  if (bestGsfElectron.isEE() && bestGsfElectron.ecalDrivenSeed())
2052  h_ele_dEtaScVsEta_propVtx->Fill(bestGsfElectron.eta(), bestGsfElectron.deltaEtaSuperClusterTrackAtVtx());
2053  h_ele_dEtaScVsPhi_propVtx->Fill(bestGsfElectron.phi(), bestGsfElectron.deltaEtaSuperClusterTrackAtVtx());
2054  h_ele_dEtaScVsPt_propVtx->Fill(bestGsfElectron.pt(), bestGsfElectron.deltaEtaSuperClusterTrackAtVtx());
2055  h_ele_dPhiSc_propVtx->Fill(bestGsfElectron.deltaPhiSuperClusterTrackAtVtx());
2056  if (bestGsfElectron.ecalDrivenSeed())
2058  if (bestGsfElectron.isEB())
2060  if (bestGsfElectron.isEB() && bestGsfElectron.ecalDrivenSeed())
2062  if (bestGsfElectron.isEE())
2064  if (bestGsfElectron.isEE() && bestGsfElectron.ecalDrivenSeed())
2066  h_ele_dPhiScVsEta_propVtx->Fill(bestGsfElectron.eta(), bestGsfElectron.deltaPhiSuperClusterTrackAtVtx());
2067  h_ele_dPhiScVsPhi_propVtx->Fill(bestGsfElectron.phi(), bestGsfElectron.deltaPhiSuperClusterTrackAtVtx());
2068  h_ele_dPhiScVsPt_propVtx->Fill(bestGsfElectron.pt(), bestGsfElectron.deltaPhiSuperClusterTrackAtVtx());
2069  h_ele_dEtaCl_propOut->Fill(bestGsfElectron.deltaEtaSeedClusterTrackAtCalo());
2070  if (bestGsfElectron.ecalDrivenSeed())
2072  if (bestGsfElectron.isEB())
2074  if (bestGsfElectron.isEB() && bestGsfElectron.ecalDrivenSeed())
2076  if (bestGsfElectron.isEE())
2078  if (bestGsfElectron.isEE() && bestGsfElectron.ecalDrivenSeed())
2080  h_ele_dEtaClVsEta_propOut->Fill(bestGsfElectron.eta(), bestGsfElectron.deltaEtaSeedClusterTrackAtCalo());
2081  h_ele_dEtaClVsPhi_propOut->Fill(bestGsfElectron.phi(), bestGsfElectron.deltaEtaSeedClusterTrackAtCalo());
2082  h_ele_dEtaClVsPt_propOut->Fill(bestGsfElectron.pt(), bestGsfElectron.deltaEtaSeedClusterTrackAtCalo());
2083  h_ele_dPhiCl_propOut->Fill(bestGsfElectron.deltaPhiSeedClusterTrackAtCalo());
2084  if (bestGsfElectron.ecalDrivenSeed())
2086  if (bestGsfElectron.isEB())
2088  if (bestGsfElectron.isEB() && bestGsfElectron.ecalDrivenSeed())
2090  if (bestGsfElectron.isEE())
2092  if (bestGsfElectron.isEE() && bestGsfElectron.ecalDrivenSeed())
2094  h_ele_dPhiClVsEta_propOut->Fill(bestGsfElectron.eta(), bestGsfElectron.deltaPhiSeedClusterTrackAtCalo());
2095  h_ele_dPhiClVsPhi_propOut->Fill(bestGsfElectron.phi(), bestGsfElectron.deltaPhiSeedClusterTrackAtCalo());
2096  h_ele_dPhiClVsPt_propOut->Fill(bestGsfElectron.pt(), bestGsfElectron.deltaPhiSeedClusterTrackAtCalo());
2097  h_ele_dEtaEleCl_propOut->Fill(bestGsfElectron.deltaEtaEleClusterTrackAtCalo());
2098  if (bestGsfElectron.ecalDrivenSeed())
2100  if (bestGsfElectron.isEB())
2102  if (bestGsfElectron.isEB() && bestGsfElectron.ecalDrivenSeed())
2104  if (bestGsfElectron.isEE())
2106  if (bestGsfElectron.isEE() && bestGsfElectron.ecalDrivenSeed())
2108  h_ele_dEtaEleClVsEta_propOut->Fill(bestGsfElectron.eta(), bestGsfElectron.deltaEtaEleClusterTrackAtCalo());
2109  h_ele_dEtaEleClVsPhi_propOut->Fill(bestGsfElectron.phi(), bestGsfElectron.deltaEtaEleClusterTrackAtCalo());
2110  h_ele_dEtaEleClVsPt_propOut->Fill(bestGsfElectron.pt(), bestGsfElectron.deltaEtaEleClusterTrackAtCalo());
2111  h_ele_dPhiEleCl_propOut->Fill(bestGsfElectron.deltaPhiEleClusterTrackAtCalo());
2112  if (bestGsfElectron.ecalDrivenSeed())
2114  if (bestGsfElectron.isEB())
2116  if (bestGsfElectron.isEB() && bestGsfElectron.ecalDrivenSeed())
2118  if (bestGsfElectron.isEE())
2120  if (bestGsfElectron.isEE() && bestGsfElectron.ecalDrivenSeed())
2122  h_ele_dPhiEleClVsEta_propOut->Fill(bestGsfElectron.eta(), bestGsfElectron.deltaPhiEleClusterTrackAtCalo());
2123  h_ele_dPhiEleClVsPhi_propOut->Fill(bestGsfElectron.phi(), bestGsfElectron.deltaPhiEleClusterTrackAtCalo());
2124  h_ele_dPhiEleClVsPt_propOut->Fill(bestGsfElectron.pt(), bestGsfElectron.deltaPhiEleClusterTrackAtCalo());
2125  h_ele_HoE->Fill(bestGsfElectron.hadronicOverEm());
2126  if (bestGsfElectron.ecalDrivenSeed())
2127  h_ele_HoE_eg->Fill(bestGsfElectron.hadronicOverEm());
2128  if (bestGsfElectron.isEB())
2129  h_ele_HoE_barrel->Fill(bestGsfElectron.hadronicOverEm());
2130  if (bestGsfElectron.isEB() && bestGsfElectron.ecalDrivenSeed())
2131  h_ele_HoE_eg_barrel->Fill(bestGsfElectron.hadronicOverEm());
2132  if (bestGsfElectron.isEE())
2133  h_ele_HoE_endcaps->Fill(bestGsfElectron.hadronicOverEm());
2134  if (bestGsfElectron.isEE() && bestGsfElectron.ecalDrivenSeed())
2135  h_ele_HoE_eg_endcaps->Fill(bestGsfElectron.hadronicOverEm());
2136  if (!bestGsfElectron.isEBEtaGap() && !bestGsfElectron.isEBPhiGap() && !bestGsfElectron.isEBEEGap() &&
2137  !bestGsfElectron.isEERingGap() && !bestGsfElectron.isEEDeeGap())
2138  h_ele_HoE_fiducial->Fill(bestGsfElectron.hadronicOverEm());
2139  h_ele_HoEVsEta->Fill(bestGsfElectron.eta(), bestGsfElectron.hadronicOverEm());
2140  h_ele_HoEVsPhi->Fill(bestGsfElectron.phi(), bestGsfElectron.hadronicOverEm());
2141  h_ele_HoEVsE->Fill(bestGsfElectron.caloEnergy(), bestGsfElectron.hadronicOverEm());
2142 
2143  //classes
2144  int eleClass = bestGsfElectron.classification();
2145  if (bestGsfElectron.isEE())
2146  eleClass += 10;
2147  h_ele_classes->Fill(eleClass);
2148 
2149  h_ele_eta->Fill(std::abs(bestGsfElectron.eta()));
2150  if (bestGsfElectron.classification() == GsfElectron::GOLDEN)
2151  h_ele_eta_golden->Fill(std::abs(bestGsfElectron.eta()));
2152  if (bestGsfElectron.classification() == GsfElectron::BIGBREM)
2153  h_ele_eta_bbrem->Fill(std::abs(bestGsfElectron.eta()));
2154  //if (bestGsfElectron.classification() == GsfElectron::OLDNARROW) h_ele_eta_narrow ->Fill(std::abs(bestGsfElectron.eta()));
2155  if (bestGsfElectron.classification() == GsfElectron::SHOWERING)
2156  h_ele_eta_shower->Fill(std::abs(bestGsfElectron.eta()));
2157 
2158  //fbrem
2159  double fbrem_mean = 0.;
2160  if (!readAOD_) // track extra does not exist in AOD
2161  fbrem_mean =
2162  1. - bestGsfElectron.gsfTrack()->outerMomentum().R() / bestGsfElectron.gsfTrack()->innerMomentum().R();
2163  double fbrem_mode = bestGsfElectron.fbrem();
2164  h_ele_fbrem->Fill(fbrem_mode);
2165  h_ele_fbremVsEta_mode->Fill(bestGsfElectron.eta(), fbrem_mode);
2166  if (!readAOD_) // track extra does not exist in AOD
2167  h_ele_fbremVsEta_mean->Fill(bestGsfElectron.eta(), fbrem_mean);
2168 
2169  if (bestGsfElectron.classification() == GsfElectron::GOLDEN)
2170  h_ele_PinVsPoutGolden_mode->Fill(bestGsfElectron.trackMomentumOut().R(),
2171  bestGsfElectron.trackMomentumAtVtx().R());
2172  if (bestGsfElectron.classification() == GsfElectron::SHOWERING)
2173  h_ele_PinVsPoutShowering_mode->Fill(bestGsfElectron.trackMomentumOut().R(),
2174  bestGsfElectron.trackMomentumAtVtx().R());
2175  if (!readAOD_) // track extra does not exist in AOD
2176  if (bestGsfElectron.classification() == GsfElectron::GOLDEN)
2177  h_ele_PinVsPoutGolden_mean->Fill(bestGsfElectron.gsfTrack()->outerMomentum().R(),
2178  bestGsfElectron.gsfTrack()->innerMomentum().R());
2179  if (!readAOD_) // track extra does not exist in AOD
2180  if (bestGsfElectron.classification() == GsfElectron::SHOWERING)
2181  h_ele_PinVsPoutShowering_mean->Fill(bestGsfElectron.gsfTrack()->outerMomentum().R(),
2182  bestGsfElectron.gsfTrack()->innerMomentum().R());
2183  if (bestGsfElectron.classification() == GsfElectron::GOLDEN)
2184  h_ele_PtinVsPtoutGolden_mode->Fill(bestGsfElectron.trackMomentumOut().Rho(),
2185  bestGsfElectron.trackMomentumAtVtx().Rho());
2186  if (bestGsfElectron.classification() == GsfElectron::SHOWERING)
2187  h_ele_PtinVsPtoutShowering_mode->Fill(bestGsfElectron.trackMomentumOut().Rho(),
2188  bestGsfElectron.trackMomentumAtVtx().Rho());
2189  if (!readAOD_) // track extra does not exist in AOD
2190  if (bestGsfElectron.classification() == GsfElectron::GOLDEN)
2191  h_ele_PtinVsPtoutGolden_mean->Fill(bestGsfElectron.gsfTrack()->outerMomentum().Rho(),
2192  bestGsfElectron.gsfTrack()->innerMomentum().Rho());
2193  if (!readAOD_) // track extra does not exist in AOD
2194  if (bestGsfElectron.classification() == GsfElectron::SHOWERING)
2195  h_ele_PtinVsPtoutShowering_mean->Fill(bestGsfElectron.gsfTrack()->outerMomentum().Rho(),
2196  bestGsfElectron.gsfTrack()->innerMomentum().Rho());
2197 
2198  h_ele_mva->Fill(bestGsfElectron.mva_e_pi());
2199  if (bestGsfElectron.ecalDrivenSeed())
2200  h_ele_provenance->Fill(1.);
2201  if (bestGsfElectron.trackerDrivenSeed())
2202  h_ele_provenance->Fill(-1.);
2203  if (bestGsfElectron.trackerDrivenSeed() || bestGsfElectron.ecalDrivenSeed())
2204  h_ele_provenance->Fill(0.);
2205  if (bestGsfElectron.trackerDrivenSeed() && !bestGsfElectron.ecalDrivenSeed())
2206  h_ele_provenance->Fill(-2.);
2207  if (!bestGsfElectron.trackerDrivenSeed() && bestGsfElectron.ecalDrivenSeed())
2208  h_ele_provenance->Fill(2.);
2209 
2210  h_ele_tkSumPt_dr03->Fill(bestGsfElectron.dr03TkSumPt());
2211  h_ele_ecalRecHitSumEt_dr03->Fill(bestGsfElectron.dr03EcalRecHitSumEt());
2214  h_ele_tkSumPt_dr04->Fill(bestGsfElectron.dr04TkSumPt());
2215  h_ele_ecalRecHitSumEt_dr04->Fill(bestGsfElectron.dr04EcalRecHitSumEt());
2218 
2219  } // gsf electron found
2220 
2221  // } // matching object found
2222 
2223  // }
2224 
2225  } // loop overmatching object
2226 
2227  h_matchingObjectNum->Fill(matchingObjectNum);
2228 }
GsfTrackRef gsfTrack() const override
reference to a GsfTrack
Definition: GsfElectron.h:156
double eta() const final
momentum pseudorapidity
bool isEBEtaGap() const
Definition: GsfElectron.h:333
virtual SuperClusterRef parentSuperCluster() const
Definition: GsfElectron.h:160
float eSuperClusterOverP() const
Definition: GsfElectron.h:221
bool isEBEEGap() const
Definition: GsfElectron.h:331
float dr04HcalDepth1TowerSumEt() const
Definition: GsfElectron.h:536
math::XYZVectorF trackMomentumAtVtx() const
Definition: GsfElectron.h:268
float dr04TkSumPt() const
Definition: GsfElectron.h:533
double pt() const final
transverse momentum
int charge() const final
electric charge
bool isEERingGap() const
Definition: GsfElectron.h:337
float dr03HcalDepth2TowerSumEt() const
Definition: GsfElectron.h:525
float fbrem() const
Definition: GsfElectron.h:726
float scE2x5Max() const
Definition: GsfElectron.h:466
bool isEEDeeGap() const
Definition: GsfElectron.h:336
bool isEE() const
Definition: GsfElectron.h:329
bool isEB() const
Definition: GsfElectron.h:328
const Double_t pi
XYZTLorentzVectorD XYZTLorentzVector
Lorentz vector with cylindrical internal representation using pseudorapidity.
Definition: LorentzVector.h:29
float dr04HcalDepth2TowerSumEt() const
Definition: GsfElectron.h:537
float deltaEtaSuperClusterTrackAtVtx() const
Definition: GsfElectron.h:225
int iEvent
Definition: GenABIO.cc:224
float hadronicOverEm() const
Definition: GsfElectron.h:468
float eSeedClusterOverP() const
Definition: GsfElectron.h:222
float dr04EcalRecHitSumEt() const
Definition: GsfElectron.h:535
float deltaPhiSeedClusterTrackAtCalo() const
Definition: GsfElectron.h:229
T sqrt(T t)
Definition: SSEVec.h:19
math::XYZVectorF trackMomentumOut() const
Definition: GsfElectron.h:270
float deltaPhiSuperClusterTrackAtVtx() const
Definition: GsfElectron.h:228
const Point & vertex() const override
vertex position (overwritten by PF...)
float dr03TkSumPt() const
Definition: GsfElectron.h:521
Abs< T >::type abs(const T &t)
Definition: Abs.h:22
float dr03HcalDepth1TowerSumEt() const
Definition: GsfElectron.h:524
float eEleClusterOverPout() const
Definition: GsfElectron.h:224
float eSeedClusterOverPout() const
Definition: GsfElectron.h:223
float scSigmaIEtaIEta() const
Definition: GsfElectron.h:464
d
Definition: ztail.py:151
float deltaPhiEleClusterTrackAtCalo() const
Definition: GsfElectron.h:230
double p() const final
magnitude of momentum vector
T const * product() const
Definition: Handle.h:69
float deltaEtaEleClusterTrackAtCalo() const
Definition: GsfElectron.h:227
Classification classification() const
Definition: GsfElectron.h:722
REF castTo() const
Definition: RefToBase.h:257
GsfTrackRefVector::size_type ambiguousGsfTracksSize() const
Definition: GsfElectron.h:682
double py() const final
y coordinate of momentum vector
float dr03EcalRecHitSumEt() const
Definition: GsfElectron.h:523
float mva_e_pi() const
Definition: GsfElectron.h:665
float deltaEtaSeedClusterTrackAtCalo() const
Definition: GsfElectron.h:226
bool isEBPhiGap() const
Definition: GsfElectron.h:334
SuperClusterRef superCluster() const override
reference to a SuperCluster
Definition: GsfElectron.h:155
bool trackerDrivenSeed() const
Definition: GsfElectron.h:159
const Point & position() const
position
Definition: BeamSpot.h:59
float scE5x5() const
Definition: GsfElectron.h:467
float caloEnergy() const
Definition: GsfElectron.h:815
double phi() const final
momentum azimuthal angle
Power< A, B >::type pow(const A &a, const B &b)
Definition: Power.h:30
float scE1x5() const
Definition: GsfElectron.h:465
bool ecalDrivenSeed() const
Definition: GsfElectron.h:158
void GsfElectronMCFakeAnalyzer::beginJob ( void  )
overridevirtual

Reimplemented from edm::one::EDAnalyzerBase.

Definition at line 117 of file GsfElectronMCFakeAnalyzer.cc.

References gather_cfg::cout, detamatchmax, detamatchmin, detamax, detamin, dphimatchmax, dphimatchmin, dphimax, dphimin, eopmax, eopmaxsht, etamax, etamin, fhitsmax, h_ele_ambiguousTracks, h_ele_ambiguousTracksVsEta, h_ele_ambiguousTracksVsPhi, h_ele_ambiguousTracksVsPt, h_ele_charge, h_ele_chargeVsEta, h_ele_chargeVsPhi, h_ele_chargeVsPt, h_ele_chi2, h_ele_chi2VsEta, h_ele_chi2VsPhi, h_ele_chi2VsPt, h_ele_classes, h_ele_dEtaCl_propOut, h_ele_dEtaCl_propOut_all, h_ele_dEtaCl_propOut_barrel, h_ele_dEtaCl_propOut_eg, h_ele_dEtaCl_propOut_eg_barrel, h_ele_dEtaCl_propOut_eg_endcaps, h_ele_dEtaCl_propOut_endcaps, h_ele_dEtaClVsEta_propOut, h_ele_dEtaClVsPhi_propOut, h_ele_dEtaClVsPt_propOut, h_ele_dEtaEleCl_propOut, h_ele_dEtaEleCl_propOut_barrel, h_ele_dEtaEleCl_propOut_eg, h_ele_dEtaEleCl_propOut_eg_barrel, h_ele_dEtaEleCl_propOut_eg_endcaps, h_ele_dEtaEleCl_propOut_endcaps, h_ele_dEtaEleClVsEta_propOut, h_ele_dEtaEleClVsPhi_propOut, h_ele_dEtaEleClVsPt_propOut, h_ele_dEtaSc_propVtx, h_ele_dEtaSc_propVtx_all, h_ele_dEtaSc_propVtx_barrel, h_ele_dEtaSc_propVtx_eg, h_ele_dEtaSc_propVtx_eg_barrel, h_ele_dEtaSc_propVtx_eg_endcaps, h_ele_dEtaSc_propVtx_endcaps, h_ele_dEtaScVsEta_propVtx, h_ele_dEtaScVsPhi_propVtx, h_ele_dEtaScVsPt_propVtx, h_ele_dPhiCl_propOut, h_ele_dPhiCl_propOut_all, h_ele_dPhiCl_propOut_barrel, h_ele_dPhiCl_propOut_eg, h_ele_dPhiCl_propOut_eg_barrel, h_ele_dPhiCl_propOut_eg_endcaps, h_ele_dPhiCl_propOut_endcaps, h_ele_dPhiClVsEta_propOut, h_ele_dPhiClVsPhi_propOut, h_ele_dPhiClVsPt_propOut, h_ele_dPhiEleCl_propOut, h_ele_dPhiEleCl_propOut_barrel, h_ele_dPhiEleCl_propOut_eg, h_ele_dPhiEleCl_propOut_eg_barrel, h_ele_dPhiEleCl_propOut_eg_endcaps, h_ele_dPhiEleCl_propOut_endcaps, h_ele_dPhiEleClVsEta_propOut, h_ele_dPhiEleClVsPhi_propOut, h_ele_dPhiEleClVsPt_propOut, h_ele_dPhiSc_propVtx, h_ele_dPhiSc_propVtx_all, h_ele_dPhiSc_propVtx_barrel, h_ele_dPhiSc_propVtx_eg, h_ele_dPhiSc_propVtx_eg_barrel, h_ele_dPhiSc_propVtx_eg_endcaps, h_ele_dPhiSc_propVtx_endcaps, h_ele_dPhiScVsEta_propVtx, h_ele_dPhiScVsPhi_propVtx, h_ele_dPhiScVsPt_propVtx, h_ele_E2mnE1vsMee_all, h_ele_E2mnE1vsMee_egeg_all, h_ele_ecalRecHitSumEt_dr03, h_ele_ecalRecHitSumEt_dr04, h_ele_EeleOPout, h_ele_EeleOPout_all, h_ele_EeleOPout_barrel, h_ele_EeleOPout_eg, h_ele_EeleOPout_eg_barrel, h_ele_EeleOPout_eg_endcaps, h_ele_EeleOPout_endcaps, h_ele_EeleOPoutVsE, h_ele_EeleOPoutVsEta, h_ele_EeleOPoutVsPhi, h_ele_EoP, h_ele_EoP_barrel, h_ele_EoP_eg, h_ele_EoP_eg_barrel, h_ele_EoP_eg_endcaps, h_ele_EoP_endcaps, h_ele_EoPout, h_ele_EoPout_all, h_ele_EoPout_barrel, h_ele_EoPout_eg, h_ele_EoPout_eg_barrel, h_ele_EoPout_eg_endcaps, h_ele_EoPout_endcaps, h_ele_EoPoutVsE, h_ele_EoPoutVsEta, h_ele_EoPoutVsPhi, h_ele_EoPVsE, h_ele_EoPVsEta, h_ele_EoPVsPhi, h_ele_EoverP_all, h_ele_EseedOP, h_ele_EseedOP_all, h_ele_EseedOP_barrel, h_ele_EseedOP_eg, h_ele_EseedOP_eg_barrel, h_ele_EseedOP_eg_endcaps, h_ele_EseedOP_endcaps, h_ele_EseedOPVsE, h_ele_EseedOPVsEta, h_ele_EseedOPVsPhi, h_ele_eta, h_ele_eta_bbrem, h_ele_eta_golden, h_ele_eta_narrow, h_ele_eta_shower, h_ele_EtaMnEtamatchingObject, h_ele_EtaMnEtamatchingObjectVsEta, h_ele_EtaMnEtamatchingObjectVsPhi, h_ele_EtaMnEtamatchingObjectVsPt, h_ele_fbrem, h_ele_fbremVsEta_mean, h_ele_fbremVsEta_mode, h_ele_foundHits, h_ele_foundHitsVsEta, h_ele_foundHitsVsPhi, h_ele_foundHitsVsPt, h_ele_hcalDepth1TowerSumEt_dr03, h_ele_hcalDepth1TowerSumEt_dr04, h_ele_hcalDepth2TowerSumEt_dr03, h_ele_hcalDepth2TowerSumEt_dr04, h_ele_HoE, h_ele_HoE_all, h_ele_HoE_barrel, h_ele_HoE_eg, h_ele_HoE_eg_barrel, h_ele_HoE_eg_endcaps, h_ele_HoE_endcaps, h_ele_HoE_fiducial, h_ele_HoEVsE, h_ele_HoEVsEta, h_ele_HoEVsPhi, h_ele_lostHits, h_ele_lostHitsVsEta, h_ele_lostHitsVsPhi, h_ele_lostHitsVsPt, h_ele_matchingObjectAbsEta_matched, h_ele_matchingObjectEta_matched, h_ele_matchingObjectPhi_matched, h_ele_matchingObjectPt_matched, h_ele_matchingObjectZ_matched, h_ele_mee_all, h_ele_mee_os, h_ele_mva, h_ele_outerP, h_ele_outerP_mode, h_ele_outerPt, h_ele_outerPt_mode, h_ele_outerPtVsEta_mode, h_ele_outerPtVsPhi_mode, h_ele_outerPtVsPt_mode, h_ele_outerPVsEta_mode, h_ele_PhiMnPhimatchingObject, h_ele_PhiMnPhimatchingObject2, h_ele_PhiMnPhimatchingObjectVsEta, h_ele_PhiMnPhimatchingObjectVsPhi, h_ele_PhiMnPhimatchingObjectVsPt, h_ele_PinMnPout, h_ele_PinMnPout_mode, h_ele_PinMnPoutVsChi2_mode, h_ele_PinMnPoutVsE_mode, h_ele_PinMnPoutVsEta_mode, h_ele_PinMnPoutVsPhi_mode, h_ele_PinMnPoutVsPt_mode, h_ele_PinVsPoutGolden_mean, h_ele_PinVsPoutGolden_mode, h_ele_PinVsPoutShowering_mean, h_ele_PinVsPoutShowering_mode, h_ele_PoPmatchingObject, h_ele_PoPmatchingObject_barrel, h_ele_PoPmatchingObject_endcaps, h_ele_PoPmatchingObjectVsEta, h_ele_PoPmatchingObjectVsPhi, h_ele_PoPmatchingObjectVsPt, h_ele_provenance, h_ele_PtinVsPtoutGolden_mean, h_ele_PtinVsPtoutGolden_mode, h_ele_PtinVsPtoutShowering_mean, h_ele_PtinVsPtoutShowering_mode, h_ele_seed_dphi2_, h_ele_seed_dphi2VsEta_, h_ele_seed_dphi2VsPt_, h_ele_seed_drz2_, h_ele_seed_drz2VsEta_, h_ele_seed_drz2VsPt_, h_ele_seed_subdet2_, h_ele_TIP_all, h_ele_tkSumPt_dr03, h_ele_tkSumPt_dr04, h_ele_vertexEta, h_ele_vertexEta_all, h_ele_vertexEtaVsPhi, h_ele_vertexP, h_ele_vertexPhi, h_ele_vertexPt, h_ele_vertexPt_all, h_ele_vertexPtVsEta, h_ele_vertexPtVsPhi, h_ele_vertexTIP, h_ele_vertexTIPVsEta, h_ele_vertexTIPVsPhi, h_ele_vertexTIPVsPt, h_ele_vertexX, h_ele_vertexY, h_ele_vertexZ, h_matchingObjectAbsEta, h_matchingObjectEta, h_matchingObjectNum, h_matchingObjectP, h_matchingObjectPhi, h_matchingObjectPt, h_matchingObjectZ, histfile_, histNum_, histSclE1x5_, histSclE1x5_barrel_, histSclE1x5_endcaps_, histSclE2x5max_, histSclE2x5max_barrel_, histSclE2x5max_endcaps_, histSclE5x5_, histSclE5x5_barrel_, histSclE5x5_endcaps_, histSclEn_, histSclEoEmatchingObject_barrel, histSclEoEmatchingObject_endcaps, histSclEoEmatchingObjectGolden_barrel, histSclEoEmatchingObjectGolden_endcaps, histSclEoEmatchingObjectShowering_barrel, histSclEoEmatchingObjectShowering_endcaps, histSclEt_, histSclEta_, histSclEtaVsPhi_, histSclEtVsEta_, histSclEtVsPhi_, histSclPhi_, histSclSigIEtaIEta_, histSclSigIEtaIEta_barrel_, histSclSigIEtaIEta_endcaps_, hoemax, hoemin, edm::InputTag::label(), lhitsmax, matchingObjectCollection_, meemax, meemin, nbindeta, nbindetamatch, nbindetamatch2D, nbindphi, nbindphimatch, nbindphimatch2D, nbineop, nbineop2D, nbineta, nbineta2D, nbinfhits, nbinhoe, nbinlhits, nbinmee, nbinp, nbinp2D, nbinphi, nbinphi2D, nbinpt, nbinpt2D, nbinpteff, nbinxyz, phimax, phimin, pmax, ptmax, and AlCaHLTBitMon_QueryRunRegistry::string.

117  {
118  histfile_->cd();
119 
120  // matching object
121  std::string::size_type locJet = matchingObjectCollection_.label().find("ak4GenJets", 0);
122  std::string type_;
123  if (locJet != std::string::npos) {
124  std::cout << "Matching objects are GenJets " << std::endl;
125  type_ = "GenJet";
126  } else {
127  std::cout << "Didn't recognize input matching objects!! " << std::endl;
128  }
129 
130  std::string htitle, hlabel;
131  hlabel = "h_" + type_ + "Num";
132  htitle = "# " + type_ + "s";
133  h_matchingObjectNum = new TH1F(hlabel.c_str(), htitle.c_str(), nbinfhits, 0., fhitsmax);
134 
135  // rec event
136  histNum_ = new TH1F("h_recEleNum", "# rec electrons", 20, 0., 20.);
137 
138  // matching object distributions
139  hlabel = "h_matchingObject_eta";
140  htitle = type_ + " #eta";
141  h_matchingObjectEta = new TH1F(hlabel.c_str(), htitle.c_str(), nbineta, etamin, etamax);
142  hlabel = "h_matchingObject_abseta";
143  htitle = type_ + " |#eta|";
144  h_matchingObjectAbsEta = new TH1F(hlabel.c_str(), htitle.c_str(), nbineta / 2, 0., etamax);
145  hlabel = "h_matchingObject_P";
146  htitle = type_ + " p";
147  h_matchingObjectP = new TH1F(hlabel.c_str(), htitle.c_str(), nbinp, 0., pmax);
148  hlabel = "h_matchingObject_Pt";
149  htitle = type_ + " pt";
150  h_matchingObjectPt = new TH1F(hlabel.c_str(), htitle.c_str(), nbinpteff, 5., ptmax);
151  hlabel = "h_matchingObject_phi";
152  htitle = type_ + " phi";
153  h_matchingObjectPhi = new TH1F(hlabel.c_str(), htitle.c_str(), nbinphi, phimin, phimax);
154  hlabel = "h_matchingObject_z";
155  htitle = type_ + " z";
156  h_matchingObjectZ = new TH1F(hlabel.c_str(), htitle.c_str(), nbinxyz, -25, 25);
157 
158  // all electrons
159  h_ele_EoverP_all = new TH1F("h_ele_EoverP_all", "ele E/P_{vertex}, all reco electrons", nbineop, 0., eopmax);
160  h_ele_EseedOP_all = new TH1F("h_ele_EseedOP_all", "ele E_{seed}/P_{vertex}, all reco electrons", nbineop, 0., eopmax);
161  h_ele_EoPout_all = new TH1F("h_ele_EoPout_all", "ele E_{seed}/P_{out}, all reco electrons", nbineop, 0., eopmax);
162  h_ele_EeleOPout_all = new TH1F("h_ele_EeleOPout_all", "ele E_{ele}/P_{out}, all reco electrons", nbineop, 0., eopmax);
163  h_ele_dEtaSc_propVtx_all = new TH1F("h_ele_dEtaSc_propVtx_all",
164  "ele #eta_{sc} - #eta_{tr}, prop from vertex, all reco electrons",
166  detamatchmin,
167  detamatchmax);
168  h_ele_dPhiSc_propVtx_all = new TH1F("h_ele_dPhiSc_propVtx_all",
169  "ele #phi_{sc} - #phi_{tr}, prop from vertex, all reco electrons",
171  dphimatchmin,
172  dphimatchmax);
173  h_ele_dEtaCl_propOut_all = new TH1F("h_ele_dEtaCl_propOut_all",
174  "ele #eta_{cl} - #eta_{tr}, prop from outermost, all reco electrons",
176  detamatchmin,
177  detamatchmax);
178  h_ele_dPhiCl_propOut_all = new TH1F("h_ele_dPhiCl_propOut_all",
179  "ele #phi_{cl} - #phi_{tr}, prop from outermost, all reco electrons",
181  dphimatchmin,
182  dphimatchmax);
183  h_ele_TIP_all = new TH1F("h_ele_TIP_all", "ele vertex transverse radius, all reco electrons", 100, 0., 0.2);
184  h_ele_HoE_all =
185  new TH1F("h_ele_HoE_all", "ele hadronic energy / em energy, all reco electrons", nbinhoe, hoemin, hoemax);
186  h_ele_vertexEta_all = new TH1F("h_ele_vertexEta_all", "ele eta, all reco electrons", nbineta, etamin, etamax);
187  h_ele_vertexEta_all->Sumw2();
188  h_ele_vertexPt_all = new TH1F("h_ele_vertexPt_all", "ele p_{T}, all reco electrons", nbinpteff, 5., ptmax);
189  h_ele_vertexPt_all->Sumw2();
190  h_ele_mee_all = new TH1F("h_ele_mee_all", "ele pairs invariant mass, all reco electrons", nbinmee, meemin, meemax);
191  h_ele_mee_os = new TH1F("h_ele_mee_os", "ele pairs invariant mass, opp. sign", nbinmee, meemin, meemax);
192 
193  // duplicates
194  h_ele_E2mnE1vsMee_all = new TH2F("h_ele_E2mnE1vsMee_all",
195  "E2 - E1 vs ele pairs invariant mass, all electrons",
196  nbinmee,
197  meemin,
198  meemax,
199  100,
200  -50.,
201  50.);
202  h_ele_E2mnE1vsMee_egeg_all = new TH2F("h_ele_E2mnE1vsMee_egeg_all",
203  "E2 - E1 vs ele pairs invariant mass, ecal driven pairs, all electrons",
204  nbinmee,
205  meemin,
206  meemax,
207  100,
208  -50.,
209  50.);
210 
211  // matched electrons
212 
214  new TH1F("h_ele_matchingObjectPt_matched", "Efficiency vs matching jet p_{T}", nbinpteff, 5., ptmax);
217  new TH1F("h_ele_matchingObjectAbsEta_matched", "Efficiency vs matching jet |#eta|", nbineta / 2, 0., 2.5);
220  new TH1F("h_ele_matchingObjectEta_matched", "Efficiency vs matching jet #eta", nbineta, etamin, etamax);
223  new TH1F("h_ele_matchingObjectPhi_matched", "Efficiency vs matching jet phi", nbinphi, phimin, phimax);
226  new TH1F("h_ele_matchingObjectZ_matched", "Efficiency vs matching jet z", nbinxyz, -25, 25);
228 
229  h_ele_charge = new TH1F("h_ele_charge", "ele charge", 5, -2., 2.);
230  h_ele_chargeVsEta = new TH2F("h_ele_chargeVsEta", "ele charge vs eta", nbineta2D, etamin, etamax, 5, -2., 2.);
231  h_ele_chargeVsPhi = new TH2F("h_ele_chargeVsPhi", "ele charge vs phi", nbinphi2D, phimin, phimax, 5, -2., 2.);
232  h_ele_chargeVsPt = new TH2F("h_ele_chargeVsPt", "ele charge vs pt", nbinpt, 0., 100., 5, -2., 2.);
233  h_ele_vertexP = new TH1F("h_ele_vertexP", "ele momentum", nbinp, 0., pmax);
234  h_ele_vertexPt = new TH1F("h_ele_vertexPt", "ele transverse momentum", nbinpt, 0., ptmax);
236  new TH2F("h_ele_vertexPtVsEta", "ele transverse momentum vs eta", nbineta2D, etamin, etamax, nbinpt2D, 0., ptmax);
238  new TH2F("h_ele_vertexPtVsPhi", "ele transverse momentum vs phi", nbinphi2D, phimin, phimax, nbinpt2D, 0., ptmax);
239  h_ele_vertexEta = new TH1F("h_ele_vertexEta", "ele momentum eta", nbineta, etamin, etamax);
241  new TH2F("h_ele_vertexEtaVsPhi", "ele momentum eta vs phi", nbineta2D, etamin, etamax, nbinphi2D, phimin, phimax);
242  h_ele_vertexPhi = new TH1F("h_ele_vertexPhi", "ele momentum #phi", nbinphi, phimin, phimax);
243  h_ele_vertexX = new TH1F("h_ele_vertexX", "ele vertex x", nbinxyz, -0.1, 0.1);
244  h_ele_vertexY = new TH1F("h_ele_vertexY", "ele vertex y", nbinxyz, -0.1, 0.1);
245  h_ele_vertexZ = new TH1F("h_ele_vertexZ", "ele vertex z", nbinxyz, -25, 25);
246  h_ele_vertexTIP = new TH1F("h_ele_vertexTIP", "ele transverse impact parameter (wrt bs)", 90, 0., 0.15);
247  h_ele_vertexTIPVsEta = new TH2F("h_ele_vertexTIPVsEta",
248  "ele transverse impact parameter (wrt bs) vs eta",
249  nbineta2D,
250  etamin,
251  etamax,
252  45,
253  0.,
254  0.15);
255  h_ele_vertexTIPVsPhi = new TH2F("h_ele_vertexTIPVsPhi",
256  "ele transverse impact parameter (wrt bs) vs phi",
257  nbinphi2D,
258  phimin,
259  phimax,
260  45,
261  0.,
262  0.15);
263  h_ele_vertexTIPVsPt = new TH2F(
264  "h_ele_vertexTIPVsPt", "ele transverse impact parameter (wrt bs) vs Pt", nbinpt2D, 0., ptmax, 45, 0., 0.15);
265 
266  h_ele_PoPmatchingObject = new TH1F("h_ele_PoPmatchingObject", "ele momentum / matching jet momentum", 75, 0., 1.5);
267  h_ele_PoPmatchingObjectVsEta = new TH2F("h_ele_PoPmatchingObjectVsEta",
268  "ele momentum / matching jet momentum vs eta",
269  nbineta2D,
270  etamin,
271  etamax,
272  50,
273  0.,
274  1.5);
275  h_ele_PoPmatchingObjectVsPhi = new TH2F("h_ele_PoPmatchingObjectVsPhi",
276  "ele momentum / matching jet momentum vs phi",
277  nbinphi2D,
278  phimin,
279  phimax,
280  50,
281  0.,
282  1.5);
283  h_ele_PoPmatchingObjectVsPt = new TH2F(
284  "h_ele_PoPmatchingObjectVsPt", "ele momentum / matching jet momentum vs eta", nbinpt2D, 0., ptmax, 50, 0., 1.5);
286  new TH1F("h_ele_PoPmatchingObject_barrel", "ele momentum / matching jet momentum, barrel", 75, 0., 1.5);
288  new TH1F("h_ele_PoPmatchingObject_endcaps", "ele momentum / matching jet momentum, endcaps", 75, 0., 1.5);
289 
291  new TH1F("h_ele_EtaMnEtamatchingObject", "ele momentum eta - matching jet eta", nbindeta, detamin, detamax);
292  h_ele_EtaMnEtamatchingObjectVsEta = new TH2F("h_ele_EtaMnEtamatchingObjectVsEta",
293  "ele momentum eta - matching jet eta vs eta",
294  nbineta2D,
295  etamin,
296  etamax,
297  nbindeta / 2,
298  detamin,
299  detamax);
300  h_ele_EtaMnEtamatchingObjectVsPhi = new TH2F("h_ele_EtaMnEtamatchingObjectVsPhi",
301  "ele momentum eta - matching jet eta vs phi",
302  nbinphi2D,
303  phimin,
304  phimax,
305  nbindeta / 2,
306  detamin,
307  detamax);
308  h_ele_EtaMnEtamatchingObjectVsPt = new TH2F("h_ele_EtaMnEtamatchingObjectVsPt",
309  "ele momentum eta - matching jet eta vs pt",
310  nbinpt,
311  0.,
312  ptmax,
313  nbindeta / 2,
314  detamin,
315  detamax);
317  new TH1F("h_ele_PhiMnPhimatchingObject", "ele momentum phi - matching jet phi", nbindphi, dphimin, dphimax);
318  h_ele_PhiMnPhimatchingObject2 = new TH1F("h_ele_PhiMnPhimatchingObject2",
319  "ele momentum phi - matching jet phi",
321  dphimatchmin,
322  dphimatchmax);
323  h_ele_PhiMnPhimatchingObjectVsEta = new TH2F("h_ele_PhiMnPhimatchingObjectVsEta",
324  "ele momentum phi - matching SC phi vs eta",
325  nbineta2D,
326  etamin,
327  etamax,
328  nbindphi / 2,
329  dphimin,
330  dphimax);
331  h_ele_PhiMnPhimatchingObjectVsPhi = new TH2F("h_ele_PhiMnPhimatchingObjectVsPhi",
332  "ele momentum phi - matching SC phi vs phi",
333  nbinphi2D,
334  phimin,
335  phimax,
336  nbindphi / 2,
337  dphimin,
338  dphimax);
339  h_ele_PhiMnPhimatchingObjectVsPt = new TH2F("h_ele_PhiMnPhimatchingObjectVsPt",
340  "ele momentum phi - matching SC phi vs pt",
341  nbinpt2D,
342  0.,
343  ptmax,
344  nbindphi / 2,
345  dphimin,
346  dphimax);
347 
348  // matched electron, superclusters
349  histSclEn_ = new TH1F("h_scl_energy", "ele supercluster energy", nbinp, 0., pmax);
351  new TH1F("h_scl_EoEmatchingObject_barrel", "ele supercluster energy / matching jet energy, barrel", 50, 0.2, 1.2);
353  "h_scl_EoEmatchingObject_endcaps", "ele supercluster energy / matching jet energy, endcaps", 50, 0.2, 1.2);
354  histSclEt_ = new TH1F("h_scl_et", "ele supercluster transverse energy", nbinpt, 0., ptmax);
355  histSclEtVsEta_ = new TH2F(
356  "h_scl_etVsEta", "ele supercluster transverse energy vs eta", nbineta2D, etamin, etamax, nbinpt, 0., ptmax);
357  histSclEtVsPhi_ = new TH2F(
358  "h_scl_etVsPhi", "ele supercluster transverse energy vs phi", nbinphi2D, phimin, phimax, nbinpt, 0., ptmax);
360  new TH2F("h_scl_etaVsPhi", "ele supercluster eta vs phi", nbinphi2D, phimin, phimax, nbineta2D, etamin, etamax);
361  histSclEta_ = new TH1F("h_scl_eta", "ele supercluster eta", nbineta, etamin, etamax);
362  histSclPhi_ = new TH1F("h_scl_phi", "ele supercluster phi", nbinphi, phimin, phimax);
363 
364  histSclSigIEtaIEta_ = new TH1F("h_scl_sigietaieta", "ele supercluster sigma ieta ieta", 100, 0., 0.05);
366  new TH1F("h_scl_sigietaieta_barrel", "ele supercluster sigma ieta ieta, barrel", 100, 0., 0.05);
368  new TH1F("h_scl_sigietaieta_endcaps", "ele supercluster sigma ieta ieta, endcaps", 100, 0., 0.05);
369  histSclE1x5_ = new TH1F("h_scl_E1x5", "ele supercluster energy in 1x5", nbinp, 0., pmax);
370  histSclE1x5_barrel_ = new TH1F("h_scl_E1x5_barrel", "ele supercluster energy in 1x5 barrel", nbinp, 0., pmax);
371  histSclE1x5_endcaps_ = new TH1F("h_scl_E1x5_endcaps", "ele supercluster energy in 1x5 endcaps", nbinp, 0., pmax);
372  histSclE2x5max_ = new TH1F("h_scl_E2x5max", "ele supercluster energy in 2x5 max", nbinp, 0., pmax);
374  new TH1F("h_scl_E2x5max_barrel", "ele supercluster energy in 2x5 max barrel", nbinp, 0., pmax);
376  new TH1F("h_scl_E2x5max_endcaps", "ele supercluster energy in 2x5 max endcaps", nbinp, 0., pmax);
377  histSclE5x5_ = new TH1F("h_scl_E5x5", "ele supercluster energy in 5x5", nbinp, 0., pmax);
378  histSclE5x5_barrel_ = new TH1F("h_scl_E5x5_barrel", "ele supercluster energy in 5x5 barrel", nbinp, 0., pmax);
379  histSclE5x5_endcaps_ = new TH1F("h_scl_E5x5_endcaps", "ele supercluster energy in 5x5 endcaps", nbinp, 0., pmax);
380 
381  // matched electron, gsf tracks
382  h_ele_ambiguousTracks = new TH1F("h_ele_ambiguousTracks", "ele # ambiguous tracks", 5, 0., 5.);
384  new TH2F("h_ele_ambiguousTracksVsEta", "ele # ambiguous tracks vs eta", nbineta2D, etamin, etamax, 5, 0., 5.);
386  new TH2F("h_ele_ambiguousTracksVsPhi", "ele # ambiguous tracks vs phi", nbinphi2D, phimin, phimax, 5, 0., 5.);
388  new TH2F("h_ele_ambiguousTracksVsPt", "ele # ambiguous tracks vs pt", nbinpt2D, 0., ptmax, 5, 0., 5.);
389  h_ele_foundHits = new TH1F("h_ele_foundHits", "ele track # found hits", nbinfhits, 0., fhitsmax);
390  h_ele_foundHitsVsEta = new TH2F(
391  "h_ele_foundHitsVsEta", "ele track # found hits vs eta", nbineta2D, etamin, etamax, nbinfhits, 0., fhitsmax);
392  h_ele_foundHitsVsPhi = new TH2F(
393  "h_ele_foundHitsVsPhi", "ele track # found hits vs phi", nbinphi2D, phimin, phimax, nbinfhits, 0., fhitsmax);
395  new TH2F("h_ele_foundHitsVsPt", "ele track # found hits vs pt", nbinpt2D, 0., ptmax, nbinfhits, 0., fhitsmax);
396  h_ele_lostHits = new TH1F("h_ele_lostHits", "ele track # lost hits", 5, 0., 5.);
397  h_ele_lostHitsVsEta = new TH2F(
398  "h_ele_lostHitsVsEta", "ele track # lost hits vs eta", nbineta2D, etamin, etamax, nbinlhits, 0., lhitsmax);
399  h_ele_lostHitsVsPhi = new TH2F(
400  "h_ele_lostHitsVsPhi", "ele track # lost hits vs eta", nbinphi2D, phimin, phimax, nbinlhits, 0., lhitsmax);
402  new TH2F("h_ele_lostHitsVsPt", "ele track # lost hits vs eta", nbinpt2D, 0., ptmax, nbinlhits, 0., lhitsmax);
403  h_ele_chi2 = new TH1F("h_ele_chi2", "ele track #chi^{2}", 100, 0., 15.);
404  h_ele_chi2VsEta = new TH2F("h_ele_chi2VsEta", "ele track #chi^{2} vs eta", nbineta2D, etamin, etamax, 50, 0., 15.);
405  h_ele_chi2VsPhi = new TH2F("h_ele_chi2VsPhi", "ele track #chi^{2} vs phi", nbinphi2D, phimin, phimax, 50, 0., 15.);
406  h_ele_chi2VsPt = new TH2F("h_ele_chi2VsPt", "ele track #chi^{2} vs pt", nbinpt2D, 0., ptmax, 50, 0., 15.);
407  h_ele_PinMnPout = new TH1F("h_ele_PinMnPout", "ele track inner p - outer p, mean", nbinp, 0., 200.);
408  h_ele_PinMnPout_mode = new TH1F("h_ele_PinMnPout_mode", "ele track inner p - outer p, mode", nbinp, 0., 100.);
409  h_ele_PinMnPoutVsEta_mode = new TH2F("h_ele_PinMnPoutVsEta_mode",
410  "ele track inner p - outer p vs eta, mode",
411  nbineta2D,
412  etamin,
413  etamax,
414  nbinp2D,
415  0.,
416  100.);
417  h_ele_PinMnPoutVsPhi_mode = new TH2F("h_ele_PinMnPoutVsPhi_mode",
418  "ele track inner p - outer p vs phi, mode",
419  nbinphi2D,
420  phimin,
421  phimax,
422  nbinp2D,
423  0.,
424  100.);
425  h_ele_PinMnPoutVsPt_mode = new TH2F(
426  "h_ele_PinMnPoutVsPt_mode", "ele track inner p - outer p vs pt, mode", nbinpt2D, 0., ptmax, nbinp2D, 0., 100.);
427  h_ele_PinMnPoutVsE_mode = new TH2F(
428  "h_ele_PinMnPoutVsE_mode", "ele track inner p - outer p vs E, mode", nbinp2D, 0., 200., nbinp2D, 0., 100.);
429  h_ele_PinMnPoutVsChi2_mode = new TH2F(
430  "h_ele_PinMnPoutVsChi2_mode", "ele track inner p - outer p vs track chi2, mode", 50, 0., 20., nbinp2D, 0., 100.);
431  h_ele_outerP = new TH1F("h_ele_outerP", "ele track outer p, mean", nbinp, 0., pmax);
432  h_ele_outerP_mode = new TH1F("h_ele_outerP_mode", "ele track outer p, mode", nbinp, 0., pmax);
434  new TH2F("h_ele_outerPVsEta_mode", "ele track outer p vs eta mode", nbineta2D, etamin, etamax, 50, 0., pmax);
435  h_ele_outerPt = new TH1F("h_ele_outerPt", "ele track outer p_{T}, mean", nbinpt, 0., ptmax);
436  h_ele_outerPt_mode = new TH1F("h_ele_outerPt_mode", "ele track outer p_{T}, mode", nbinpt, 0., ptmax);
437  h_ele_outerPtVsEta_mode = new TH2F(
438  "h_ele_outerPtVsEta_mode", "ele track outer p_{T} vs eta, mode", nbineta2D, etamin, etamax, nbinpt2D, 0., ptmax);
439  h_ele_outerPtVsPhi_mode = new TH2F(
440  "h_ele_outerPtVsPhi_mode", "ele track outer p_{T} vs phi, mode", nbinphi2D, phimin, phimax, nbinpt2D, 0., ptmax);
442  new TH2F("h_ele_outerPtVsPt_mode", "ele track outer p_{T} vs pt, mode", nbinpt2D, 0., 100., nbinpt2D, 0., ptmax);
443 
444  // matched electrons,cluster-track matching
445  h_ele_EoP = new TH1F("h_ele_EoP", "ele E/P_{vertex}", nbineop, 0., eopmax);
446  h_ele_EoP->Sumw2();
447  h_ele_EoP_eg = new TH1F("h_ele_EoP_eg", "ele E/P_{vertex}, ecal driven", nbineop, 0., eopmax);
448  h_ele_EoP_eg->Sumw2();
449  h_ele_EoP_barrel = new TH1F("h_ele_EoP_barrel", "ele E/P_{vertex} barrel", nbineop, 0., eopmax);
450  h_ele_EoP_barrel->Sumw2();
451  h_ele_EoP_eg_barrel = new TH1F("h_ele_EoP_eg_barrel", "ele E/P_{vertex}, ecal driven barrel", nbineop, 0., eopmax);
452  h_ele_EoP_eg_barrel->Sumw2();
453  h_ele_EoP_endcaps = new TH1F("h_ele_EoP_endcaps", "ele E/P_{vertex} endcaps", nbineop, 0., eopmax);
454  h_ele_EoP_endcaps->Sumw2();
455  h_ele_EoP_eg_endcaps = new TH1F("h_ele_EoP_eg_endcaps", "ele E/P_{vertex}, ecal driven endcaps", nbineop, 0., eopmax);
456  h_ele_EoP_eg_endcaps->Sumw2();
458  new TH2F("h_ele_EoPVsEta", "ele E/P_{vertex} vs eta", nbineta2D, etamin, etamax, nbineop2D, 0., eopmaxsht);
460  new TH2F("h_ele_EoPVsPhi", "ele E/P_{vertex} vs phi", nbinphi2D, phimin, phimax, nbineop2D, 0., eopmaxsht);
461  h_ele_EoPVsE = new TH2F("h_ele_EoPVsE", "ele E/P_{vertex} vs E", 50, 0., pmax, 50, 0., 5.);
462  h_ele_EseedOP = new TH1F("h_ele_EseedOP", "ele E_{seed}/P_{vertex}", nbineop, 0., eopmax);
463  h_ele_EseedOP->Sumw2();
464  h_ele_EseedOP_eg = new TH1F("h_ele_EseedOP_eg", "ele E_{seed}/P_{vertex}, ecal driven", nbineop, 0., eopmax);
465  h_ele_EseedOP_eg->Sumw2();
466  h_ele_EseedOP_barrel = new TH1F("h_ele_EseedOP_barrel", "ele E_{seed}/P_{vertex} barrel", nbineop, 0., eopmax);
467  h_ele_EseedOP_barrel->Sumw2();
469  new TH1F("h_ele_EseedOP_eg_barrel", "ele E_{seed}/P_{vertex}, ecal driven barrel", nbineop, 0., eopmax);
470  h_ele_EseedOP_eg_barrel->Sumw2();
471  h_ele_EseedOP_endcaps = new TH1F("h_ele_EseedOP_endcaps", "ele E_{seed}/P_{vertex} endcaps", nbineop, 0., eopmax);
472  h_ele_EseedOP_endcaps->Sumw2();
474  new TH1F("h_ele_EseedOP_eg_endcaps", "ele E_{seed}/P_{vertex}, ecal driven, endcaps", nbineop, 0., eopmax);
475  h_ele_EseedOP_eg_endcaps->Sumw2();
476  h_ele_EseedOPVsEta = new TH2F(
477  "h_ele_EseedOPVsEta", "ele E_{seed}/P_{vertex} vs eta", nbineta2D, etamin, etamax, nbineop2D, 0., eopmaxsht);
478  h_ele_EseedOPVsPhi = new TH2F(
479  "h_ele_EseedOPVsPhi", "ele E_{seed}/P_{vertex} vs phi", nbinphi2D, phimin, phimax, nbineop2D, 0., eopmaxsht);
480  h_ele_EseedOPVsE = new TH2F("h_ele_EseedOPVsE", "ele E_{seed}/P_{vertex} vs E", 50, 0., pmax, 50, 0., 5.);
481  h_ele_EoPout = new TH1F("h_ele_EoPout", "ele E_{seed}/P_{out}", nbineop, 0., eopmax);
482  h_ele_EoPout->Sumw2();
483  h_ele_EoPout_eg = new TH1F("h_ele_EoPout_eg", "ele E_{seed}/P_{out}, ecal driven", nbineop, 0., eopmax);
484  h_ele_EoPout_eg->Sumw2();
485  h_ele_EoPout_barrel = new TH1F("h_ele_EoPout_barrel", "ele E_{seed}/P_{out} barrel", nbineop, 0., eopmax);
486  h_ele_EoPout_barrel->Sumw2();
488  new TH1F("h_ele_EoPout_eg_barrel", "ele E_{seed}/P_{out}, ecal driven, barrel", nbineop, 0., eopmax);
489  h_ele_EoPout_eg_barrel->Sumw2();
490  h_ele_EoPout_endcaps = new TH1F("h_ele_EoPout_endcaps", "ele E_{seed}/P_{out} endcaps", nbineop, 0., eopmax);
491  h_ele_EoPout_endcaps->Sumw2();
493  new TH1F("h_ele_EoPout_eg_endcaps", "ele E_{seed}/P_{out}, ecal driven, endcaps", nbineop, 0., eopmax);
494  h_ele_EoPout_eg_endcaps->Sumw2();
496  new TH2F("h_ele_EoPoutVsEta", "ele E/P_{out} vs eta", nbineta2D, etamin, etamax, nbineop2D, 0., eopmaxsht);
498  new TH2F("h_ele_EoPoutVsPhi", "ele E/P_{out} vs phi", nbinphi2D, phimin, phimax, nbineop2D, 0., eopmaxsht);
499  h_ele_EoPoutVsE = new TH2F("h_ele_EoPoutVsE", "ele E/P_{out} vs E", nbinp2D, 0., pmax, nbineop2D, 0., eopmaxsht);
500  h_ele_EeleOPout = new TH1F("h_ele_EeleOPout", "ele E_{ele}/P_{out}", nbineop, 0., eopmax);
501  h_ele_EeleOPout->Sumw2();
502  h_ele_EeleOPout_eg = new TH1F("h_ele_EeleOPout_eg", "ele E_{ele}/P_{out}, ecal driven", nbineop, 0., eopmax);
503  h_ele_EeleOPout_eg->Sumw2();
504  h_ele_EeleOPout_barrel = new TH1F("h_ele_EeleOPout_barrel", "ele E_{ele}/P_{out} barrel", nbineop, 0., eopmax);
505  h_ele_EeleOPout_barrel->Sumw2();
507  new TH1F("h_ele_EeleOPout_eg_barrel", "ele E_{ele}/P_{out}, ecal driven, barrel", nbineop, 0., eopmax);
508  h_ele_EeleOPout_eg_barrel->Sumw2();
509  h_ele_EeleOPout_endcaps = new TH1F("h_ele_EeleOPout_endcaps", "ele E_{ele}/P_{out} endcaps", nbineop, 0., eopmax);
510  h_ele_EeleOPout_endcaps->Sumw2();
512  new TH1F("h_ele_EeleOPout_eg_endcaps", "ele E_{ele}/P_{out}, ecal driven, endcaps", nbineop, 0., eopmax);
514  h_ele_EeleOPoutVsEta = new TH2F(
515  "h_ele_EeleOPoutVsEta", "ele E_{ele}/P_{out} vs eta", nbineta2D, etamin, etamax, nbineop2D, 0., eopmaxsht);
516  h_ele_EeleOPoutVsPhi = new TH2F(
517  "h_ele_EeleOPoutVsPhi", "ele E_{ele}/P_{out} vs phi", nbinphi2D, phimin, phimax, nbineop2D, 0., eopmaxsht);
519  new TH2F("h_ele_EeleOPoutVsE", "ele E_{ele}/P_{out} vs E", nbinp2D, 0., pmax, nbineop2D, 0., eopmaxsht);
520  h_ele_dEtaSc_propVtx = new TH1F(
521  "h_ele_dEtaSc_propVtx", "ele #eta_{sc} - #eta_{tr}, prop from vertex", nbindetamatch, detamatchmin, detamatchmax);
522  h_ele_dEtaSc_propVtx->Sumw2();
523  h_ele_dEtaSc_propVtx_eg = new TH1F("h_ele_dEtaSc_propVtx_eg",
524  "ele #eta_{sc} - #eta_{tr}, prop from vertex, ecal driven",
526  detamatchmin,
527  detamatchmax);
528  h_ele_dEtaSc_propVtx_eg->Sumw2();
529  h_ele_dEtaSc_propVtx_barrel = new TH1F("h_ele_dEtaSc_propVtx_barrel",
530  "ele #eta_{sc} - #eta_{tr}, prop from vertex, barrel",
532  detamatchmin,
533  detamatchmax);
535  h_ele_dEtaSc_propVtx_eg_barrel = new TH1F("h_ele_dEtaSc_propVtx_eg_barrel",
536  "ele #eta_{sc} - #eta_{tr}, prop from vertex, ecal driven, barrel",
538  detamatchmin,
539  detamatchmax);
541  h_ele_dEtaSc_propVtx_endcaps = new TH1F("h_ele_dEtaSc_propVtx_endcaps",
542  "ele #eta_{sc} - #eta_{tr}, prop from vertex, endcaps",
544  detamatchmin,
545  detamatchmax);
547  h_ele_dEtaSc_propVtx_eg_endcaps = new TH1F("h_ele_dEtaSc_propVtx_eg_endcaps",
548  "ele #eta_{sc} - #eta_{tr}, prop from vertex, ecal driven, endcaps",
550  detamatchmin,
551  detamatchmax);
553  h_ele_dEtaScVsEta_propVtx = new TH2F("h_ele_dEtaScVsEta_propVtx",
554  "ele #eta_{sc} - #eta_{tr} vs eta, prop from vertex",
555  nbineta2D,
556  etamin,
557  etamax,
559  detamatchmin,
560  detamatchmax);
561  h_ele_dEtaScVsPhi_propVtx = new TH2F("h_ele_dEtaScVsPhi_propVtx",
562  "ele #eta_{sc} - #eta_{tr} vs phi, prop from vertex",
563  nbinphi2D,
564  phimin,
565  phimax,
567  detamatchmin,
568  detamatchmax);
569  h_ele_dEtaScVsPt_propVtx = new TH2F("h_ele_dEtaScVsPt_propVtx",
570  "ele #eta_{sc} - #eta_{tr} vs pt, prop from vertex",
571  nbinpt2D,
572  0.,
573  ptmax,
575  detamatchmin,
576  detamatchmax);
577  h_ele_dPhiSc_propVtx = new TH1F(
578  "h_ele_dPhiSc_propVtx", "ele #phi_{sc} - #phi_{tr}, prop from vertex", nbindphimatch, dphimatchmin, dphimatchmax);
579  h_ele_dPhiSc_propVtx->Sumw2();
580  h_ele_dPhiSc_propVtx_eg = new TH1F("h_ele_dPhiSc_propVtx_eg",
581  "ele #phi_{sc} - #phi_{tr}, prop from vertex, ecal driven",
583  dphimatchmin,
584  dphimatchmax);
585  h_ele_dPhiSc_propVtx_eg->Sumw2();
586  h_ele_dPhiSc_propVtx_barrel = new TH1F("h_ele_dPhiSc_propVtx_barrel",
587  "ele #phi_{sc} - #phi_{tr}, prop from vertex, barrel",
589  dphimatchmin,
590  dphimatchmax);
592  h_ele_dPhiSc_propVtx_eg_barrel = new TH1F("h_ele_dPhiSc_propVtx_eg_barrel",
593  "ele #phi_{sc} - #phi_{tr}, prop from vertex, ecal driven, barrel",
595  dphimatchmin,
596  dphimatchmax);
598  h_ele_dPhiSc_propVtx_endcaps = new TH1F("h_ele_dPhiSc_propVtx_endcaps",
599  "ele #phi_{sc} - #phi_{tr}, prop from vertex, endcaps",
601  dphimatchmin,
602  dphimatchmax);
604  h_ele_dPhiSc_propVtx_eg_endcaps = new TH1F("h_ele_dPhiSc_propVtx_eg_endcaps",
605  "ele #phi_{sc} - #phi_{tr}, prop from vertex, ecal driven, endcaps",
607  dphimatchmin,
608  dphimatchmax);
610  h_ele_dPhiScVsEta_propVtx = new TH2F("h_ele_dPhiScVsEta_propVtx",
611  "ele #phi_{sc} - #phi_{tr} vs eta, prop from vertex",
612  nbineta2D,
613  etamin,
614  etamax,
616  dphimatchmin,
617  dphimatchmax);
618  h_ele_dPhiScVsPhi_propVtx = new TH2F("h_ele_dPhiScVsPhi_propVtx",
619  "ele #phi_{sc} - #phi_{tr} vs phi, prop from vertex",
620  nbinphi2D,
621  phimin,
622  phimax,
624  dphimatchmin,
625  dphimatchmax);
626  h_ele_dPhiScVsPt_propVtx = new TH2F("h_ele_dPhiScVsPt_propVtx",
627  "ele #phi_{sc} - #phi_{tr} vs pt, prop from vertex",
628  nbinpt2D,
629  0.,
630  ptmax,
632  dphimatchmin,
633  dphimatchmax);
634  h_ele_dEtaCl_propOut = new TH1F("h_ele_dEtaCl_propOut",
635  "ele #eta_{cl} - #eta_{tr}, prop from outermost",
637  detamatchmin,
638  detamatchmax);
639  h_ele_dEtaCl_propOut->Sumw2();
640  h_ele_dEtaCl_propOut_eg = new TH1F("h_ele_dEtaCl_propOut_eg",
641  "ele #eta_{cl} - #eta_{tr}, prop from outermost, ecal driven",
643  detamatchmin,
644  detamatchmax);
645  h_ele_dEtaCl_propOut_eg->Sumw2();
646  h_ele_dEtaCl_propOut_barrel = new TH1F("h_ele_dEtaCl_propOut_barrel",
647  "ele #eta_{cl} - #eta_{tr}, prop from outermost, barrel",
649  detamatchmin,
650  detamatchmax);
652  h_ele_dEtaCl_propOut_eg_barrel = new TH1F("h_ele_dEtaCl_propOut_eg_barrel",
653  "ele #eta_{cl} - #eta_{tr}, prop from outermost, ecal driven, barrel",
655  detamatchmin,
656  detamatchmax);
658  h_ele_dEtaCl_propOut_endcaps = new TH1F("h_ele_dEtaCl_propOut_endcaps",
659  "ele #eta_{cl} - #eta_{tr}, prop from outermost, endcaps",
661  detamatchmin,
662  detamatchmax);
664  h_ele_dEtaCl_propOut_eg_endcaps = new TH1F("h_ele_dEtaCl_propOut_eg_endcaps",
665  "ele #eta_{cl} - #eta_{tr}, prop from outermost, ecal driven, endcaps",
667  detamatchmin,
668  detamatchmax);
670  h_ele_dEtaClVsEta_propOut = new TH2F("h_ele_dEtaClVsEta_propOut",
671  "ele #eta_{cl} - #eta_{tr} vs eta, prop from out",
672  nbineta2D,
673  etamin,
674  etamax,
676  detamatchmin,
677  detamatchmax);
678  h_ele_dEtaClVsPhi_propOut = new TH2F("h_ele_dEtaClVsPhi_propOut",
679  "ele #eta_{cl} - #eta_{tr} vs phi, prop from out",
680  nbinphi2D,
681  phimin,
682  phimax,
684  detamatchmin,
685  detamatchmax);
686  h_ele_dEtaClVsPt_propOut = new TH2F("h_ele_dEtaScVsPt_propOut",
687  "ele #eta_{cl} - #eta_{tr} vs pt, prop from out",
688  nbinpt2D,
689  0.,
690  ptmax,
692  detamatchmin,
693  detamatchmax);
694  h_ele_dPhiCl_propOut = new TH1F("h_ele_dPhiCl_propOut",
695  "ele #phi_{cl} - #phi_{tr}, prop from outermost",
697  dphimatchmin,
698  dphimatchmax);
699  h_ele_dPhiCl_propOut->Sumw2();
700  h_ele_dPhiCl_propOut_eg = new TH1F("h_ele_dPhiCl_propOut_eg",
701  "ele #phi_{cl} - #phi_{tr}, prop from outermost, ecal driven",
703  dphimatchmin,
704  dphimatchmax);
705  h_ele_dPhiCl_propOut_eg->Sumw2();
706  h_ele_dPhiCl_propOut_barrel = new TH1F("h_ele_dPhiCl_propOut_barrel",
707  "ele #phi_{cl} - #phi_{tr}, prop from outermost, barrel",
709  dphimatchmin,
710  dphimatchmax);
712  h_ele_dPhiCl_propOut_eg_barrel = new TH1F("h_ele_dPhiCl_propOut_eg_barrel",
713  "ele #phi_{cl} - #phi_{tr}, prop from outermost, ecal driven, barrel",
715  dphimatchmin,
716  dphimatchmax);
718  h_ele_dPhiCl_propOut_endcaps = new TH1F("h_ele_dPhiCl_propOut_endcaps",
719  "ele #phi_{cl} - #phi_{tr}, prop from outermost, endcaps",
721  dphimatchmin,
722  dphimatchmax);
724  h_ele_dPhiCl_propOut_eg_endcaps = new TH1F("h_ele_dPhiCl_propOut_eg_endcaps",
725  "ele #phi_{cl} - #phi_{tr}, prop from outermost, ecal driven, endcaps",
727  dphimatchmin,
728  dphimatchmax);
730  h_ele_dPhiClVsEta_propOut = new TH2F("h_ele_dPhiClVsEta_propOut",
731  "ele #phi_{cl} - #phi_{tr} vs eta, prop from out",
732  nbineta2D,
733  etamin,
734  etamax,
736  dphimatchmin,
737  dphimatchmax);
738  h_ele_dPhiClVsPhi_propOut = new TH2F("h_ele_dPhiClVsPhi_propOut",
739  "ele #phi_{cl} - #phi_{tr} vs phi, prop from out",
740  nbinphi2D,
741  phimin,
742  phimax,
744  dphimatchmin,
745  dphimatchmax);
746  h_ele_dPhiClVsPt_propOut = new TH2F("h_ele_dPhiSClsPt_propOut",
747  "ele #phi_{cl} - #phi_{tr} vs pt, prop from out",
748  nbinpt2D,
749  0.,
750  ptmax,
752  dphimatchmin,
753  dphimatchmax);
754  h_ele_dEtaEleCl_propOut = new TH1F("h_ele_dEtaEleCl_propOut",
755  "ele #eta_{EleCl} - #eta_{tr}, prop from outermost",
757  detamatchmin,
758  detamatchmax);
759  h_ele_dEtaEleCl_propOut->Sumw2();
760  h_ele_dEtaEleCl_propOut_eg = new TH1F("h_ele_dEtaEleCl_propOut_eg",
761  "ele #eta_{EleCl} - #eta_{tr}, prop from outermost, ecal driven",
763  detamatchmin,
764  detamatchmax);
766  h_ele_dEtaEleCl_propOut_barrel = new TH1F("h_ele_dEtaEleCl_propOut_barrel",
767  "ele #eta_{EleCl} - #eta_{tr}, prop from outermost, barrel",
769  detamatchmin,
770  detamatchmax);
772  h_ele_dEtaEleCl_propOut_eg_barrel = new TH1F("h_ele_dEtaEleCl_propOut_eg_barrel",
773  "ele #eta_{EleCl} - #eta_{tr}, prop from outermost, ecal driven, barrel",
775  detamatchmin,
776  detamatchmax);
778  h_ele_dEtaEleCl_propOut_endcaps = new TH1F("h_ele_dEtaEleCl_propOut_endcaps",
779  "ele #eta_{EleCl} - #eta_{tr}, prop from outermost, endcaps",
781  detamatchmin,
782  detamatchmax);
785  new TH1F("h_ele_dEtaEleCl_propOut_eg_endcaps",
786  "ele #eta_{EleCl} - #eta_{tr}, prop from outermost, ecal driven, endcaps",
788  detamatchmin,
789  detamatchmax);
791  h_ele_dEtaEleClVsEta_propOut = new TH2F("h_ele_dEtaEleClVsEta_propOut",
792  "ele #eta_{EleCl} - #eta_{tr} vs eta, prop from out",
793  nbineta2D,
794  etamin,
795  etamax,
797  detamatchmin,
798  detamatchmax);
799  h_ele_dEtaEleClVsPhi_propOut = new TH2F("h_ele_dEtaEleClVsPhi_propOut",
800  "ele #eta_{EleCl} - #eta_{tr} vs phi, prop from out",
801  nbinphi2D,
802  phimin,
803  phimax,
805  detamatchmin,
806  detamatchmax);
807  h_ele_dEtaEleClVsPt_propOut = new TH2F("h_ele_dEtaScVsPt_propOut",
808  "ele #eta_{EleCl} - #eta_{tr} vs pt, prop from out",
809  nbinpt2D,
810  0.,
811  ptmax,
813  detamatchmin,
814  detamatchmax);
815  h_ele_dPhiEleCl_propOut = new TH1F("h_ele_dPhiEleCl_propOut",
816  "ele #phi_{EleCl} - #phi_{tr}, prop from outermost",
818  dphimatchmin,
819  dphimatchmax);
820  h_ele_dPhiEleCl_propOut->Sumw2();
821  h_ele_dPhiEleCl_propOut_eg = new TH1F("h_ele_dPhiEleCl_propOut_eg",
822  "ele #phi_{EleCl} - #phi_{tr}, prop from outermost, ecal driven",
824  dphimatchmin,
825  dphimatchmax);
827  h_ele_dPhiEleCl_propOut_barrel = new TH1F("h_ele_dPhiEleCl_propOut_barrel",
828  "ele #phi_{EleCl} - #phi_{tr}, prop from outermost, barrel",
830  dphimatchmin,
831  dphimatchmax);
833  h_ele_dPhiEleCl_propOut_eg_barrel = new TH1F("h_ele_dPhiEleCl_propOut_eg_barrel",
834  "ele #phi_{EleCl} - #phi_{tr}, prop from outermost, ecal driven, barrel",
836  dphimatchmin,
837  dphimatchmax);
839  h_ele_dPhiEleCl_propOut_endcaps = new TH1F("h_ele_dPhiEleCl_propOut_endcaps",
840  "ele #phi_{EleCl} - #phi_{tr}, prop from outermost, endcaps",
842  dphimatchmin,
843  dphimatchmax);
846  new TH1F("h_ele_dPhiEleCl_propOut_eg_endcaps",
847  "ele #phi_{EleCl} - #phi_{tr}, prop from outermost, ecal driven, endcaps",
849  dphimatchmin,
850  dphimatchmax);
852  h_ele_dPhiEleClVsEta_propOut = new TH2F("h_ele_dPhiEleClVsEta_propOut",
853  "ele #phi_{EleCl} - #phi_{tr} vs eta, prop from out",
854  nbineta2D,
855  etamin,
856  etamax,
858  dphimatchmin,
859  dphimatchmax);
860  h_ele_dPhiEleClVsPhi_propOut = new TH2F("h_ele_dPhiEleClVsPhi_propOut",
861  "ele #phi_{EleCl} - #phi_{tr} vs phi, prop from out",
862  nbinphi2D,
863  phimin,
864  phimax,
866  dphimatchmin,
867  dphimatchmax);
868  h_ele_dPhiEleClVsPt_propOut = new TH2F("h_ele_dPhiSEleClsPt_propOut",
869  "ele #phi_{EleCl} - #phi_{tr} vs pt, prop from out",
870  nbinpt2D,
871  0.,
872  ptmax,
874  dphimatchmin,
875  dphimatchmax);
876 
877  h_ele_HoE = new TH1F("h_ele_HoE", "ele hadronic energy / em energy", nbinhoe, hoemin, hoemax);
878  h_ele_HoE->Sumw2();
879  h_ele_HoE_eg = new TH1F("h_ele_HoE_eg", "ele hadronic energy / em energy, ecal driven", nbinhoe, hoemin, hoemax);
880  h_ele_HoE_eg->Sumw2();
881  h_ele_HoE_barrel = new TH1F("h_ele_HoE_barrel", "ele hadronic energy / em energy, barrel", nbinhoe, hoemin, hoemax);
882  h_ele_HoE_barrel->Sumw2();
884  new TH1F("h_ele_HoE_eg_barrel", "ele hadronic energy / em energy, ecal driven, barrel", nbinhoe, hoemin, hoemax);
885  h_ele_HoE_eg_barrel->Sumw2();
887  new TH1F("h_ele_HoE_endcaps", "ele hadronic energy / em energy, endcaps", nbinhoe, hoemin, hoemax);
888  h_ele_HoE_endcaps->Sumw2();
889  h_ele_HoE_eg_endcaps = new TH1F(
890  "h_ele_HoE_eg_endcaps", "ele hadronic energy / em energy, ecal driven, endcaps", nbinhoe, hoemin, hoemax);
891  h_ele_HoE_eg_endcaps->Sumw2();
892  h_ele_HoE_fiducial = new TH1F("h_ele_HoE_fiducial", "ele hadronic energy / em energy", nbinhoe, hoemin, hoemax);
893  h_ele_HoEVsEta = new TH2F(
894  "h_ele_HoEVsEta", "ele hadronic energy / em energy vs eta", nbineta, etamin, etamax, nbinhoe, hoemin, hoemax);
895  h_ele_HoEVsPhi = new TH2F(
896  "h_ele_HoEVsPhi", "ele hadronic energy / em energy vs phi", nbinphi2D, phimin, phimax, nbinhoe, hoemin, hoemax);
897  h_ele_HoEVsE =
898  new TH2F("h_ele_HoEVsE", "ele hadronic energy / em energy vs E", nbinp, 0., 300., nbinhoe, hoemin, hoemax);
899 
900  h_ele_seed_dphi2_ = new TH1F("h_ele_seedDphi2", "ele seed dphi 2nd layer", 50, -0.003, +0.003);
902  new TH2F("h_ele_seedDphi2VsEta", "ele seed dphi 2nd layer vs eta", nbineta2D, etamin, etamax, 50, -0.003, +0.003);
904  new TH2F("h_ele_seedDphi2VsPt", "ele seed dphi 2nd layer vs pt", nbinpt2D, 0., ptmax, 50, -0.003, +0.003);
905  h_ele_seed_drz2_ = new TH1F("h_ele_seedDrz2", "ele seed dr/dz 2nd layer", 50, -0.03, +0.03);
907  new TH2F("h_ele_seedDrz2VsEta", "ele seed dr/dz 2nd layer vs eta", nbineta2D, etamin, etamax, 50, -0.03, +0.03);
909  new TH2F("h_ele_seedDrz2VsPt", "ele seed dr/dz 2nd layer vs pt", nbinpt2D, 0., ptmax, 50, -0.03, +0.03);
910  h_ele_seed_subdet2_ = new TH1F("h_ele_seedSubdet2", "ele seed subdet 2nd layer", 10, 0., 10.);
911 
912  // classes
913  h_ele_classes = new TH1F("h_ele_classes", "electron classes", 20, 0.0, 20.);
914  h_ele_eta = new TH1F("h_ele_eta", "ele electron eta", nbineta / 2, 0.0, etamax);
915  h_ele_eta_golden = new TH1F("h_ele_eta_golden", "ele electron eta golden", nbineta / 2, 0.0, etamax);
916  h_ele_eta_bbrem = new TH1F("h_ele_eta_bbrem", "ele electron eta bbrem", nbineta / 2, 0.0, etamax);
917  h_ele_eta_narrow = new TH1F("h_ele_eta_narrow", "ele electron eta narrow", nbineta / 2, 0.0, etamax);
918  h_ele_eta_shower = new TH1F("h_ele_eta_show", "el, electron eta showering", nbineta / 2, 0.0, etamax);
919  h_ele_PinVsPoutGolden_mode = new TH2F(
920  "h_ele_PinVsPoutGolden_mode", "ele track inner p vs outer p, golden, mode", nbinp2D, 0., pmax, 50, 0., pmax);
921  h_ele_PinVsPoutShowering_mode = new TH2F("h_ele_PinVsPoutShowering_mode",
922  "ele track inner p vs outer p vs eta, showering, mode",
923  nbinp2D,
924  0.,
925  pmax,
926  50,
927  0.,
928  pmax);
929  h_ele_PinVsPoutGolden_mean = new TH2F(
930  "h_ele_PinVsPoutGolden_mean", "ele track inner p vs outer p, golden, mean", nbinp2D, 0., pmax, 50, 0., pmax);
932  "h_ele_PinVsPoutShowering_mean", "ele track inner p vs outer p, showering, mean", nbinp2D, 0., pmax, 50, 0., pmax);
933  h_ele_PtinVsPtoutGolden_mode = new TH2F("h_ele_PtinVsPtoutGolden_mode",
934  "ele track inner pt vs outer pt, golden, mode",
935  nbinpt2D,
936  0.,
937  ptmax,
938  50,
939  0.,
940  ptmax);
941  h_ele_PtinVsPtoutShowering_mode = new TH2F("h_ele_PtinVsPtoutShowering_mode",
942  "ele track inner pt vs outer pt, showering, mode",
943  nbinpt2D,
944  0.,
945  ptmax,
946  50,
947  0.,
948  ptmax);
949  h_ele_PtinVsPtoutGolden_mean = new TH2F("h_ele_PtinVsPtoutGolden_mean",
950  "ele track inner pt vs outer pt, golden, mean",
951  nbinpt2D,
952  0.,
953  ptmax,
954  50,
955  0.,
956  ptmax);
957  h_ele_PtinVsPtoutShowering_mean = new TH2F("h_ele_PtinVsPtoutShowering_mean",
958  "ele track inner pt vs outer pt, showering, mean",
959  nbinpt2D,
960  0.,
961  ptmax,
962  50,
963  0.,
964  ptmax);
966  "h_scl_EoEmatchingObject golden, barrel", "ele SC energy over matching jet energy, golden, barrel", 100, 0.2, 1.2);
967  histSclEoEmatchingObjectGolden_endcaps = new TH1F("h_scl_EoEmatchingObject golden, endcaps",
968  "ele SC energy over matching jet energy, golden, endcaps",
969  100,
970  0.2,
971  1.2);
972  histSclEoEmatchingObjectShowering_barrel = new TH1F("h_scl_EoEmatchingObject showering, barrel",
973  "ele SC energy over matching jet energy, showering, barrel",
974  100,
975  0.2,
976  1.2);
977  histSclEoEmatchingObjectShowering_endcaps = new TH1F("h_scl_EoEmatchingObject showering, endcaps",
978  "ele SC energy over matching jet energy, showering, endcaps",
979  100,
980  0.2,
981  1.2);
982 
983  // isolation
984  h_ele_tkSumPt_dr03 = new TH1F("h_ele_tkSumPt_dr03", "tk isolation sum, dR=0.3", 100, 0.0, 20.);
985  h_ele_ecalRecHitSumEt_dr03 = new TH1F("h_ele_ecalRecHitSumEt_dr03", "ecal isolation sum, dR=0.3", 100, 0.0, 20.);
987  new TH1F("h_ele_hcalDepth1TowerSumEt_dr03", "hcal depth1 isolation sum, dR=0.3", 100, 0.0, 20.);
989  new TH1F("h_ele_hcalDepth2TowerSumEt_dr03", "hcal depth2 isolation sum, dR=0.3", 100, 0.0, 20.);
990  h_ele_tkSumPt_dr04 = new TH1F("h_ele_tkSumPt_dr04", "hcal isolation sum", 100, 0.0, 20.);
991  h_ele_ecalRecHitSumEt_dr04 = new TH1F("h_ele_ecalRecHitSumEt_dr04", "ecal isolation sum, dR=0.4", 100, 0.0, 20.);
993  new TH1F("h_ele_hcalDepth1TowerSumEt_dr04", "hcal depth1 isolation sum, dR=0.4", 100, 0.0, 20.);
995  new TH1F("h_ele_hcalDepth2TowerSumEt_dr04", "hcal depth2 isolation sum, dR=0.4", 100, 0.0, 20.);
996 
997  // fbrem
998  h_ele_fbrem = new TH1F("h_ele_fbrem", "ele brem fraction, mode", 100, 0., 1.);
1000  new TProfile("h_ele_fbremvsEtamode", "mean ele brem fraction vs eta, mode", nbineta2D, etamin, etamax, 0., 1.);
1002  new TProfile("h_ele_fbremvsEtamean", "mean ele brem fraction vs eta, mean", nbineta2D, etamin, etamax, 0., 1.);
1003 
1004  // e/g et pflow electrons
1005  h_ele_mva = new TH1F("h_ele_mva", "ele mva", 100, -1., 1.);
1006  h_ele_provenance = new TH1F("h_ele_provenance", "ele provenance", 5, -2., 3.);
1007 
1008  // histos titles
1009  h_matchingObjectNum->GetXaxis()->SetTitle("N_{GenJet}");
1010  h_matchingObjectNum->GetYaxis()->SetTitle("Events");
1011  h_matchingObjectEta->GetXaxis()->SetTitle("#eta_{GenJet}");
1012  h_matchingObjectEta->GetYaxis()->SetTitle("Events");
1013  h_matchingObjectP->GetXaxis()->SetTitle("E_{GenJet} (GeV)");
1014  h_matchingObjectP->GetYaxis()->SetTitle("Events");
1015  h_ele_foundHits->GetXaxis()->SetTitle("N_{hits}");
1016  h_ele_foundHits->GetYaxis()->SetTitle("Events");
1017  h_ele_ambiguousTracks->GetXaxis()->SetTitle("N_{ambiguous tracks}");
1018  h_ele_ambiguousTracks->GetYaxis()->SetTitle("Events");
1019  h_ele_lostHits->GetXaxis()->SetTitle("N_{lost hits}");
1020  h_ele_lostHits->GetYaxis()->SetTitle("Events");
1021  h_ele_chi2->GetXaxis()->SetTitle("#Chi^{2}");
1022  h_ele_chi2->GetYaxis()->SetTitle("Events");
1023  h_ele_charge->GetXaxis()->SetTitle("charge");
1024  h_ele_charge->GetYaxis()->SetTitle("Events");
1025  h_ele_vertexP->GetXaxis()->SetTitle("p_{vertex} (GeV/c)");
1026  h_ele_vertexP->GetYaxis()->SetTitle("Events");
1027  h_ele_vertexPt->GetXaxis()->SetTitle("p_{T vertex} (GeV/c)");
1028  h_ele_vertexPt->GetYaxis()->SetTitle("Events");
1029  h_ele_vertexEta->GetXaxis()->SetTitle("#eta");
1030  h_ele_vertexEta->GetYaxis()->SetTitle("Events");
1031  h_ele_vertexPhi->GetXaxis()->SetTitle("#phi (rad)");
1032  h_ele_vertexPhi->GetYaxis()->SetTitle("Events");
1033  h_ele_PoPmatchingObject->GetXaxis()->SetTitle("P/P_{gen jet}");
1034  h_ele_PoPmatchingObject->GetYaxis()->SetTitle("Events");
1035  h_ele_PoPmatchingObject_barrel->GetXaxis()->SetTitle("P/P_{gen jet}");
1036  h_ele_PoPmatchingObject_barrel->GetYaxis()->SetTitle("Events");
1037  h_ele_PoPmatchingObject_endcaps->GetXaxis()->SetTitle("P/P_{gen jet}");
1038  h_ele_PoPmatchingObject_endcaps->GetYaxis()->SetTitle("Events");
1039  histSclSigIEtaIEta_->GetXaxis()->SetTitle("#sigma_{i#eta i#eta}");
1040  histSclSigIEtaIEta_->GetYaxis()->SetTitle("Events");
1041  histSclSigIEtaIEta_barrel_->GetXaxis()->SetTitle("#sigma_{i#eta i#eta}");
1042  histSclSigIEtaIEta_barrel_->GetYaxis()->SetTitle("Events");
1043  histSclSigIEtaIEta_endcaps_->GetXaxis()->SetTitle("#sigma_{i#eta i#eta}");
1044  histSclSigIEtaIEta_endcaps_->GetYaxis()->SetTitle("Events");
1045  histSclE1x5_->GetXaxis()->SetTitle("E1x5 (GeV)");
1046  histSclE1x5_->GetYaxis()->SetTitle("Events");
1047  histSclE1x5_barrel_->GetXaxis()->SetTitle("E1x5 (GeV)");
1048  histSclE1x5_barrel_->GetYaxis()->SetTitle("Events");
1049  histSclE1x5_endcaps_->GetXaxis()->SetTitle("E1x5 (GeV)");
1050  histSclE1x5_endcaps_->GetYaxis()->SetTitle("Events");
1051  histSclE2x5max_->GetXaxis()->SetTitle("E2x5 (GeV)");
1052  histSclE2x5max_->GetYaxis()->SetTitle("Events");
1053  histSclE2x5max_barrel_->GetXaxis()->SetTitle("E2x5 (GeV)");
1054  histSclE2x5max_barrel_->GetYaxis()->SetTitle("Events");
1055  histSclE2x5max_endcaps_->GetXaxis()->SetTitle("E2x5 (GeV)");
1056  histSclE2x5max_endcaps_->GetYaxis()->SetTitle("Events");
1057  histSclE5x5_->GetXaxis()->SetTitle("E5x5 (GeV)");
1058  histSclE5x5_->GetYaxis()->SetTitle("Events");
1059  histSclE5x5_barrel_->GetXaxis()->SetTitle("E5x5 (GeV)");
1060  histSclE5x5_barrel_->GetYaxis()->SetTitle("Events");
1061  histSclE5x5_endcaps_->GetXaxis()->SetTitle("E5x5 (GeV)");
1062  histSclE5x5_endcaps_->GetYaxis()->SetTitle("Events");
1063  h_ele_EtaMnEtamatchingObject->GetXaxis()->SetTitle("#eta_{rec} - #eta_{jet}");
1064  h_ele_EtaMnEtamatchingObject->GetYaxis()->SetTitle("Events");
1065  h_ele_PhiMnPhimatchingObject->GetXaxis()->SetTitle("#phi_{rec} - #phi_{jet} (rad)");
1066  h_ele_PhiMnPhimatchingObject->GetYaxis()->SetTitle("Events");
1067  h_ele_PinMnPout->GetXaxis()->SetTitle("P_{vertex} - P_{out} (GeV/c)");
1068  h_ele_PinMnPout->GetYaxis()->SetTitle("Events");
1069  h_ele_PinMnPout_mode->GetXaxis()->SetTitle("P_{vertex} - P_{out}, mode (GeV/c)");
1070  h_ele_PinMnPout_mode->GetYaxis()->SetTitle("Events");
1071  h_ele_outerP->GetXaxis()->SetTitle("P_{out} (GeV/c)");
1072  h_ele_outerP->GetYaxis()->SetTitle("Events");
1073  h_ele_outerP_mode->GetXaxis()->SetTitle("P_{out} (GeV/c)");
1074  h_ele_outerP_mode->GetYaxis()->SetTitle("Events");
1075  h_ele_outerPt->GetXaxis()->SetTitle("P_{T out} (GeV/c)");
1076  h_ele_outerPt->GetYaxis()->SetTitle("Events");
1077  h_ele_outerPt_mode->GetXaxis()->SetTitle("P_{T out} (GeV/c)");
1078  h_ele_outerPt_mode->GetYaxis()->SetTitle("Events");
1079  h_ele_EoP->GetXaxis()->SetTitle("E/P_{vertex}");
1080  h_ele_EoP->GetYaxis()->SetTitle("Events");
1081  h_ele_EseedOP->GetXaxis()->SetTitle("E_{seed}/P_{vertex}");
1082  h_ele_EseedOP->GetYaxis()->SetTitle("Events");
1083  h_ele_EoPout->GetXaxis()->SetTitle("E_{seed}/P_{out}");
1084  h_ele_EoPout->GetYaxis()->SetTitle("Events");
1085  h_ele_EeleOPout->GetXaxis()->SetTitle("E_{ele}/P_{out}");
1086  h_ele_EeleOPout->GetYaxis()->SetTitle("Events");
1087  h_ele_EoP_barrel->GetXaxis()->SetTitle("E/P_{vertex}");
1088  h_ele_EoP_barrel->GetYaxis()->SetTitle("Events");
1089  h_ele_EseedOP_barrel->GetXaxis()->SetTitle("E_{seed}/P_{vertex}");
1090  h_ele_EseedOP_barrel->GetYaxis()->SetTitle("Events");
1091  h_ele_EoPout_barrel->GetXaxis()->SetTitle("E_{seed}/P_{out}");
1092  h_ele_EoPout_barrel->GetYaxis()->SetTitle("Events");
1093  h_ele_EeleOPout_barrel->GetXaxis()->SetTitle("E_{ele}/P_{out}");
1094  h_ele_EeleOPout_barrel->GetYaxis()->SetTitle("Events");
1095  h_ele_EoP_endcaps->GetXaxis()->SetTitle("E/P_{vertex}");
1096  h_ele_EoP_endcaps->GetYaxis()->SetTitle("Events");
1097  h_ele_EseedOP_endcaps->GetXaxis()->SetTitle("E_{seed}/P_{vertex}");
1098  h_ele_EseedOP_endcaps->GetYaxis()->SetTitle("Events");
1099  h_ele_EoPout_endcaps->GetXaxis()->SetTitle("E_{seed}/P_{out}");
1100  h_ele_EoPout_endcaps->GetYaxis()->SetTitle("Events");
1101  h_ele_EeleOPout_endcaps->GetXaxis()->SetTitle("E_{ele}/P_{out}");
1102  h_ele_EeleOPout_endcaps->GetYaxis()->SetTitle("Events");
1103  h_ele_vertexX->GetXaxis()->SetTitle("x (cm)");
1104  h_ele_vertexX->GetYaxis()->SetTitle("Events");
1105  h_ele_vertexY->GetXaxis()->SetTitle("y (cm)");
1106  h_ele_vertexY->GetYaxis()->SetTitle("Events");
1107  h_ele_vertexZ->GetXaxis()->SetTitle("z (cm)");
1108  h_ele_vertexZ->GetYaxis()->SetTitle("Events");
1109  h_ele_vertexTIP->GetXaxis()->SetTitle("TIP (cm)");
1110  h_ele_vertexTIP->GetYaxis()->SetTitle("Events");
1111  h_ele_TIP_all->GetXaxis()->SetTitle("r_{T} (cm)");
1112  h_ele_TIP_all->GetYaxis()->SetTitle("Events");
1113  h_ele_vertexTIPVsEta->GetYaxis()->SetTitle("TIP (cm)");
1114  h_ele_vertexTIPVsEta->GetXaxis()->SetTitle("#eta");
1115  h_ele_vertexTIPVsPhi->GetYaxis()->SetTitle("TIP (cm)");
1116  h_ele_vertexTIPVsPhi->GetXaxis()->SetTitle("#phi (rad)");
1117  h_ele_vertexTIPVsPt->GetYaxis()->SetTitle("TIP (cm)");
1118  h_ele_vertexTIPVsPt->GetXaxis()->SetTitle("p_{T} (GeV/c)");
1119  h_ele_dEtaSc_propVtx->GetXaxis()->SetTitle("#eta_{sc} - #eta_{tr}");
1120  h_ele_dEtaSc_propVtx->GetXaxis()->SetTitle("#eta_{sc} - #eta_{tr}");
1121  h_ele_dEtaSc_propVtx->GetYaxis()->SetTitle("Events");
1122  h_ele_dEtaCl_propOut->GetXaxis()->SetTitle("#eta_{seedcl} - #eta_{tr}");
1123  h_ele_dEtaCl_propOut->GetYaxis()->SetTitle("Events");
1124  h_ele_dEtaEleCl_propOut->GetXaxis()->SetTitle("#eta_{elecl} - #eta_{tr}");
1125  h_ele_dEtaEleCl_propOut->GetYaxis()->SetTitle("Events");
1126  h_ele_dPhiSc_propVtx->GetXaxis()->SetTitle("#phi_{sc} - #phi_{tr} (rad)");
1127  h_ele_dPhiSc_propVtx->GetYaxis()->SetTitle("Events");
1128  h_ele_dPhiCl_propOut->GetXaxis()->SetTitle("#phi_{seedcl} - #phi_{tr} (rad)");
1129  h_ele_dPhiCl_propOut->GetYaxis()->SetTitle("Events");
1130  h_ele_dPhiEleCl_propOut->GetXaxis()->SetTitle("#phi_{elecl} - #phi_{tr} (rad)");
1131  h_ele_dPhiEleCl_propOut->GetYaxis()->SetTitle("Events");
1132  h_ele_dEtaSc_propVtx_barrel->GetXaxis()->SetTitle("#eta_{sc} - #eta_{tr}");
1133  h_ele_dEtaSc_propVtx_barrel->GetYaxis()->SetTitle("Events");
1134  h_ele_dEtaCl_propOut_barrel->GetXaxis()->SetTitle("#eta_{seedcl} - #eta_{tr}");
1135  h_ele_dEtaCl_propOut_barrel->GetYaxis()->SetTitle("Events");
1136  h_ele_dEtaEleCl_propOut_barrel->GetXaxis()->SetTitle("#eta_{elecl} - #eta_{tr}");
1137  h_ele_dEtaEleCl_propOut_barrel->GetYaxis()->SetTitle("Events");
1138  h_ele_dPhiSc_propVtx_barrel->GetXaxis()->SetTitle("#phi_{sc} - #phi_{tr} (rad)");
1139  h_ele_dPhiSc_propVtx_barrel->GetYaxis()->SetTitle("Events");
1140  h_ele_dPhiCl_propOut_barrel->GetXaxis()->SetTitle("#phi_{seedcl} - #phi_{tr} (rad)");
1141  h_ele_dPhiCl_propOut_barrel->GetYaxis()->SetTitle("Events");
1142  h_ele_dPhiEleCl_propOut_barrel->GetXaxis()->SetTitle("#phi_{elecl} - #phi_{tr} (rad)");
1143  h_ele_dPhiEleCl_propOut_barrel->GetYaxis()->SetTitle("Events");
1144  h_ele_dEtaSc_propVtx_endcaps->GetXaxis()->SetTitle("#eta_{sc} - #eta_{tr}");
1145  h_ele_dEtaSc_propVtx_endcaps->GetYaxis()->SetTitle("Events");
1146  h_ele_dEtaCl_propOut_endcaps->GetXaxis()->SetTitle("#eta_{seedcl} - #eta_{tr}");
1147  h_ele_dEtaCl_propOut_endcaps->GetYaxis()->SetTitle("Events");
1148  h_ele_dEtaEleCl_propOut_endcaps->GetXaxis()->SetTitle("#eta_{elecl} - #eta_{tr}");
1149  h_ele_dEtaEleCl_propOut_endcaps->GetYaxis()->SetTitle("Events");
1150  h_ele_dPhiSc_propVtx_endcaps->GetXaxis()->SetTitle("#phi_{sc} - #phi_{tr} (rad)");
1151  h_ele_dPhiSc_propVtx_endcaps->GetYaxis()->SetTitle("Events");
1152  h_ele_dPhiCl_propOut_endcaps->GetXaxis()->SetTitle("#phi_{seedcl} - #phi_{tr} (rad)");
1153  h_ele_dPhiCl_propOut_endcaps->GetYaxis()->SetTitle("Events");
1154  h_ele_dPhiEleCl_propOut_endcaps->GetXaxis()->SetTitle("#phi_{elecl} - #phi_{tr} (rad)");
1155  h_ele_dPhiEleCl_propOut_endcaps->GetYaxis()->SetTitle("Events");
1156  h_ele_HoE->GetXaxis()->SetTitle("H/E");
1157  h_ele_HoE->GetYaxis()->SetTitle("Events");
1158  h_ele_HoE_barrel->GetXaxis()->SetTitle("H/E");
1159  h_ele_HoE_barrel->GetYaxis()->SetTitle("Events");
1160  h_ele_HoE_endcaps->GetXaxis()->SetTitle("H/E");
1161  h_ele_HoE_endcaps->GetYaxis()->SetTitle("Events");
1162  h_ele_HoE_fiducial->GetXaxis()->SetTitle("H/E");
1163  h_ele_HoE_fiducial->GetYaxis()->SetTitle("Events");
1164  h_ele_fbrem->GetXaxis()->SetTitle("P_{in} - P_{out} / P_{in}");
1165  h_ele_fbrem->GetYaxis()->SetTitle("Events");
1166  h_ele_seed_dphi2_->GetXaxis()->SetTitle("#phi_{hit}-#phi_{pred} (rad)");
1167  h_ele_seed_dphi2_->GetYaxis()->SetTitle("Events");
1168  h_ele_seed_drz2_->GetXaxis()->SetTitle("r(z)_{hit}-r(z)_{pred} (cm)");
1169  h_ele_seed_drz2_->GetYaxis()->SetTitle("Events");
1170  h_ele_seed_subdet2_->GetXaxis()->SetTitle("2nd hit subdet Id");
1171  h_ele_seed_subdet2_->GetYaxis()->SetTitle("Events");
1172  h_ele_classes->GetXaxis()->SetTitle("class Id");
1173  h_ele_classes->GetYaxis()->SetTitle("Events");
1174  h_ele_EoverP_all->GetXaxis()->SetTitle("E/P_{vertex}");
1175  h_ele_EoverP_all->GetYaxis()->SetTitle("Events");
1176  h_ele_EseedOP_all->GetXaxis()->SetTitle("E_{seed}/P_{vertex}");
1177  h_ele_EseedOP_all->GetYaxis()->SetTitle("Events");
1178  h_ele_EoPout_all->GetXaxis()->SetTitle("E_{seed}/P_{out}");
1179  h_ele_EoPout_all->GetYaxis()->SetTitle("Events");
1180  h_ele_EeleOPout_all->GetXaxis()->SetTitle("E_{ele}/P_{out}");
1181  h_ele_EeleOPout_all->GetYaxis()->SetTitle("Events");
1182  h_ele_dEtaSc_propVtx_all->GetXaxis()->SetTitle("#eta_{sc} - #eta_{tr}");
1183  h_ele_dEtaSc_propVtx_all->GetYaxis()->SetTitle("Events");
1184  h_ele_dPhiSc_propVtx_all->GetXaxis()->SetTitle("#phi_{sc} - #phi_{tr} (rad)");
1185  h_ele_dPhiSc_propVtx_all->GetYaxis()->SetTitle("Events");
1186  h_ele_dEtaCl_propOut_all->GetXaxis()->SetTitle("#eta_{sc} - #eta_{tr}");
1187  h_ele_dEtaCl_propOut_all->GetYaxis()->SetTitle("Events");
1188  h_ele_dPhiCl_propOut_all->GetXaxis()->SetTitle("#phi_{sc} - #phi_{tr} (rad)");
1189  h_ele_dPhiCl_propOut_all->GetYaxis()->SetTitle("Events");
1190  h_ele_HoE_all->GetXaxis()->SetTitle("H/E");
1191  h_ele_HoE_all->GetYaxis()->SetTitle("Events");
1192  h_ele_mee_all->GetXaxis()->SetTitle("m_{ee} (GeV/c^{2})");
1193  h_ele_mee_all->GetYaxis()->SetTitle("Events");
1194  h_ele_mee_os->GetXaxis()->SetTitle("m_{e^{+}e^{-}} (GeV/c^{2})");
1195  h_ele_mee_os->GetYaxis()->SetTitle("Events");
1196  h_ele_E2mnE1vsMee_all->GetXaxis()->SetTitle("m_{e^{+}e^{-}} (GeV/c^{2})");
1197  h_ele_E2mnE1vsMee_all->GetYaxis()->SetTitle("E2 - E1 (GeV)");
1198  h_ele_E2mnE1vsMee_egeg_all->GetXaxis()->SetTitle("m_{e^{+}e^{-}} (GeV/c^{2})");
1199  h_ele_E2mnE1vsMee_egeg_all->GetYaxis()->SetTitle("E2 - E1 (GeV)");
1200  histNum_->GetXaxis()->SetTitle("N_{ele}");
1201  histNum_->GetYaxis()->SetTitle("Events");
1202  h_ele_fbremVsEta_mode->GetXaxis()->SetTitle("#eta");
1203  h_ele_fbremVsEta_mean->GetXaxis()->SetTitle("#eta");
1204 }
uint16_t size_type
std::string const & label() const
Definition: InputTag.h:36
void GsfElectronMCFakeAnalyzer::endJob ( void  )
overridevirtual

Reimplemented from edm::one::EDAnalyzerBase.

Definition at line 1206 of file GsfElectronMCFakeAnalyzer.cc.

References gather_cfg::cout, h_ele_ambiguousTracks, h_ele_ambiguousTracksVsEta, h_ele_ambiguousTracksVsPhi, h_ele_ambiguousTracksVsPt, h_ele_charge, h_ele_chargeVsEta, h_ele_chargeVsPhi, h_ele_chargeVsPt, h_ele_chi2, h_ele_chi2VsEta, h_ele_chi2VsPhi, h_ele_chi2VsPt, h_ele_classes, h_ele_dEtaCl_propOut, h_ele_dEtaCl_propOut_all, h_ele_dEtaCl_propOut_barrel, h_ele_dEtaCl_propOut_eg, h_ele_dEtaCl_propOut_eg_barrel, h_ele_dEtaCl_propOut_eg_endcaps, h_ele_dEtaCl_propOut_endcaps, h_ele_dEtaClVsEta_propOut, h_ele_dEtaClVsPhi_propOut, h_ele_dEtaClVsPt_propOut, h_ele_dEtaEleCl_propOut, h_ele_dEtaEleCl_propOut_barrel, h_ele_dEtaEleCl_propOut_eg, h_ele_dEtaEleCl_propOut_eg_barrel, h_ele_dEtaEleCl_propOut_eg_endcaps, h_ele_dEtaEleCl_propOut_endcaps, h_ele_dEtaEleClVsEta_propOut, h_ele_dEtaEleClVsPhi_propOut, h_ele_dEtaEleClVsPt_propOut, h_ele_dEtaSc_propVtx, h_ele_dEtaSc_propVtx_all, h_ele_dEtaSc_propVtx_barrel, h_ele_dEtaSc_propVtx_eg, h_ele_dEtaSc_propVtx_eg_barrel, h_ele_dEtaSc_propVtx_eg_endcaps, h_ele_dEtaSc_propVtx_endcaps, h_ele_dEtaScVsEta_propVtx, h_ele_dEtaScVsPhi_propVtx, h_ele_dEtaScVsPt_propVtx, h_ele_dPhiCl_propOut, h_ele_dPhiCl_propOut_all, h_ele_dPhiCl_propOut_barrel, h_ele_dPhiCl_propOut_eg, h_ele_dPhiCl_propOut_eg_barrel, h_ele_dPhiCl_propOut_eg_endcaps, h_ele_dPhiCl_propOut_endcaps, h_ele_dPhiClVsEta_propOut, h_ele_dPhiClVsPhi_propOut, h_ele_dPhiClVsPt_propOut, h_ele_dPhiEleCl_propOut, h_ele_dPhiEleCl_propOut_barrel, h_ele_dPhiEleCl_propOut_eg, h_ele_dPhiEleCl_propOut_eg_barrel, h_ele_dPhiEleCl_propOut_eg_endcaps, h_ele_dPhiEleCl_propOut_endcaps, h_ele_dPhiEleClVsEta_propOut, h_ele_dPhiEleClVsPhi_propOut, h_ele_dPhiEleClVsPt_propOut, h_ele_dPhiSc_propVtx, h_ele_dPhiSc_propVtx_all, h_ele_dPhiSc_propVtx_barrel, h_ele_dPhiSc_propVtx_eg, h_ele_dPhiSc_propVtx_eg_barrel, h_ele_dPhiSc_propVtx_eg_endcaps, h_ele_dPhiSc_propVtx_endcaps, h_ele_dPhiScVsEta_propVtx, h_ele_dPhiScVsPhi_propVtx, h_ele_dPhiScVsPt_propVtx, h_ele_E2mnE1vsMee_all, h_ele_E2mnE1vsMee_egeg_all, h_ele_ecalRecHitSumEt_dr03, h_ele_ecalRecHitSumEt_dr04, h_ele_EeleOPout, h_ele_EeleOPout_all, h_ele_EeleOPout_barrel, h_ele_EeleOPout_eg, h_ele_EeleOPout_eg_barrel, h_ele_EeleOPout_eg_endcaps, h_ele_EeleOPout_endcaps, h_ele_EeleOPoutVsE, h_ele_EeleOPoutVsEta, h_ele_EeleOPoutVsPhi, h_ele_EoP, h_ele_EoP_barrel, h_ele_EoP_eg, h_ele_EoP_eg_barrel, h_ele_EoP_eg_endcaps, h_ele_EoP_endcaps, h_ele_EoPout, h_ele_EoPout_all, h_ele_EoPout_barrel, h_ele_EoPout_eg, h_ele_EoPout_eg_barrel, h_ele_EoPout_eg_endcaps, h_ele_EoPout_endcaps, h_ele_EoPoutVsE, h_ele_EoPoutVsEta, h_ele_EoPoutVsPhi, h_ele_EoPVsE, h_ele_EoPVsEta, h_ele_EoPVsPhi, h_ele_EoverP_all, h_ele_EseedOP, h_ele_EseedOP_all, h_ele_EseedOP_barrel, h_ele_EseedOP_eg, h_ele_EseedOP_eg_barrel, h_ele_EseedOP_eg_endcaps, h_ele_EseedOP_endcaps, h_ele_EseedOPVsE, h_ele_EseedOPVsEta, h_ele_EseedOPVsPhi, h_ele_eta, h_ele_eta_bbrem, h_ele_eta_golden, h_ele_eta_narrow, h_ele_eta_shower, h_ele_EtaMnEtamatchingObject, h_ele_EtaMnEtamatchingObjectVsEta, h_ele_EtaMnEtamatchingObjectVsPhi, h_ele_EtaMnEtamatchingObjectVsPt, h_ele_fbrem, h_ele_fbremVsEta_mean, h_ele_fbremVsEta_mode, h_ele_foundHits, h_ele_foundHitsVsEta, h_ele_foundHitsVsPhi, h_ele_foundHitsVsPt, h_ele_hcalDepth1TowerSumEt_dr03, h_ele_hcalDepth1TowerSumEt_dr04, h_ele_hcalDepth2TowerSumEt_dr03, h_ele_hcalDepth2TowerSumEt_dr04, h_ele_HoE, h_ele_HoE_all, h_ele_HoE_barrel, h_ele_HoE_eg, h_ele_HoE_eg_barrel, h_ele_HoE_eg_endcaps, h_ele_HoE_endcaps, h_ele_HoE_fiducial, h_ele_HoEVsE, h_ele_HoEVsEta, h_ele_HoEVsPhi, h_ele_lostHits, h_ele_lostHitsVsEta, h_ele_lostHitsVsPhi, h_ele_lostHitsVsPt, h_ele_matchingObjectAbsEta_matched, h_ele_matchingObjectEta_matched, h_ele_matchingObjectPhi_matched, h_ele_matchingObjectPt_matched, h_ele_matchingObjectZ_matched, h_ele_mee_all, h_ele_mee_os, h_ele_mva, h_ele_outerP, h_ele_outerP_mode, h_ele_outerPt, h_ele_outerPt_mode, h_ele_outerPtVsEta_mode, h_ele_outerPtVsPhi_mode, h_ele_outerPtVsPt_mode, h_ele_outerPVsEta_mode, h_ele_PhiMnPhimatchingObject, h_ele_PhiMnPhimatchingObject2, h_ele_PhiMnPhimatchingObjectVsEta, h_ele_PhiMnPhimatchingObjectVsPhi, h_ele_PhiMnPhimatchingObjectVsPt, h_ele_PinMnPout, h_ele_PinMnPout_mode, h_ele_PinMnPoutVsChi2_mode, h_ele_PinMnPoutVsE_mode, h_ele_PinMnPoutVsEta_mode, h_ele_PinMnPoutVsPhi_mode, h_ele_PinMnPoutVsPt_mode, h_ele_PinVsPoutGolden_mean, h_ele_PinVsPoutGolden_mode, h_ele_PinVsPoutShowering_mean, h_ele_PinVsPoutShowering_mode, h_ele_PoPmatchingObject, h_ele_PoPmatchingObject_barrel, h_ele_PoPmatchingObject_endcaps, h_ele_PoPmatchingObjectVsEta, h_ele_PoPmatchingObjectVsPhi, h_ele_PoPmatchingObjectVsPt, h_ele_provenance, h_ele_PtinVsPtoutGolden_mean, h_ele_PtinVsPtoutGolden_mode, h_ele_PtinVsPtoutShowering_mean, h_ele_PtinVsPtoutShowering_mode, h_ele_seed_dphi2_, h_ele_seed_dphi2VsEta_, h_ele_seed_dphi2VsPt_, h_ele_seed_drz2_, h_ele_seed_drz2VsEta_, h_ele_seed_drz2VsPt_, h_ele_seed_subdet2_, h_ele_TIP_all, h_ele_tkSumPt_dr03, h_ele_tkSumPt_dr04, h_ele_vertexEta, h_ele_vertexEta_all, h_ele_vertexEtaVsPhi, h_ele_vertexP, h_ele_vertexPhi, h_ele_vertexPt, h_ele_vertexPt_all, h_ele_vertexPtVsEta, h_ele_vertexPtVsPhi, h_ele_vertexTIP, h_ele_vertexTIPVsEta, h_ele_vertexTIPVsPhi, h_ele_vertexTIPVsPt, h_ele_vertexX, h_ele_vertexY, h_ele_vertexZ, h_matchingObjectAbsEta, h_matchingObjectEta, h_matchingObjectNum, h_matchingObjectP, h_matchingObjectPhi, h_matchingObjectPt, h_matchingObjectZ, histfile_, histNum_, histSclE1x5_, histSclE1x5_barrel_, histSclE1x5_endcaps_, histSclE2x5max_, histSclE2x5max_barrel_, histSclE2x5max_endcaps_, histSclE5x5_, histSclE5x5_barrel_, histSclE5x5_endcaps_, histSclEn_, histSclEoEmatchingObject_barrel, histSclEoEmatchingObject_endcaps, histSclEoEmatchingObjectGolden_barrel, histSclEoEmatchingObjectGolden_endcaps, histSclEoEmatchingObjectShowering_barrel, histSclEoEmatchingObjectShowering_endcaps, histSclEt_, histSclEta_, histSclEtaVsPhi_, histSclEtVsEta_, histSclEtVsPhi_, histSclPhi_, histSclSigIEtaIEta_, histSclSigIEtaIEta_barrel_, histSclSigIEtaIEta_endcaps_, dqm-mbProfile::log, and nbineta.

1206  {
1207  histfile_->cd();
1208  std::cout << "efficiency calculation " << std::endl;
1209  // efficiency vs eta
1210  TH1F *h_ele_etaEff = (TH1F *)h_ele_matchingObjectEta_matched->Clone("h_ele_etaEff");
1211  h_ele_etaEff->Reset();
1212  h_ele_etaEff->Divide(h_ele_matchingObjectEta_matched, h_matchingObjectEta, 1, 1, "b");
1213  h_ele_etaEff->Print();
1214  h_ele_etaEff->GetXaxis()->SetTitle("#eta");
1215  h_ele_etaEff->GetYaxis()->SetTitle("Efficiency");
1216 
1217  // efficiency vs z
1218  TH1F *h_ele_zEff = (TH1F *)h_ele_matchingObjectZ_matched->Clone("h_ele_zEff");
1219  h_ele_zEff->Reset();
1220  h_ele_zEff->Divide(h_ele_matchingObjectZ_matched, h_matchingObjectZ, 1, 1, "b");
1221  h_ele_zEff->Print();
1222  h_ele_zEff->GetXaxis()->SetTitle("z (cm)");
1223  h_ele_zEff->GetYaxis()->SetTitle("Efficiency");
1224 
1225  // efficiency vs |eta|
1226  TH1F *h_ele_absetaEff = (TH1F *)h_ele_matchingObjectAbsEta_matched->Clone("h_ele_absetaEff");
1227  h_ele_absetaEff->Reset();
1228  h_ele_absetaEff->Divide(h_ele_matchingObjectAbsEta_matched, h_matchingObjectAbsEta, 1, 1, "b");
1229  h_ele_absetaEff->GetXaxis()->SetTitle("|#eta|");
1230  h_ele_absetaEff->GetYaxis()->SetTitle("Efficiency");
1231 
1232  // efficiency vs pt
1233  TH1F *h_ele_ptEff = (TH1F *)h_ele_matchingObjectPt_matched->Clone("h_ele_ptEff");
1234  h_ele_ptEff->Reset();
1235  h_ele_ptEff->Divide(h_ele_matchingObjectPt_matched, h_matchingObjectPt, 1, 1, "b");
1236  h_ele_ptEff->GetXaxis()->SetTitle("p_{T} (GeV/c)");
1237  h_ele_ptEff->GetYaxis()->SetTitle("Efficiency");
1238 
1239  // efficiency vs phi
1240  TH1F *h_ele_phiEff = (TH1F *)h_ele_matchingObjectPhi_matched->Clone("h_ele_phiEff");
1241  h_ele_phiEff->Reset();
1242  h_ele_phiEff->Divide(h_ele_matchingObjectPhi_matched, h_matchingObjectPhi, 1, 1, "b");
1243  h_ele_phiEff->GetXaxis()->SetTitle("#phi (rad)");
1244  h_ele_phiEff->GetYaxis()->SetTitle("Efficiency");
1245 
1246  // rec/matching objects all electrons
1247  TH1F *h_ele_etaEff_all = (TH1F *)h_ele_vertexEta_all->Clone("h_ele_etaEff_all");
1248  h_ele_etaEff_all->Reset();
1249  h_ele_etaEff_all->Divide(h_ele_vertexEta_all, h_matchingObjectEta, 1, 1, "b");
1250  h_ele_etaEff_all->Print();
1251  h_ele_etaEff_all->GetXaxis()->SetTitle("#eta");
1252  h_ele_etaEff_all->GetYaxis()->SetTitle("N_{rec}/N_{matching jet}");
1253 
1254  TH1F *h_ele_ptEff_all = (TH1F *)h_ele_vertexPt_all->Clone("h_ele_ptEff_all");
1255  h_ele_ptEff_all->Reset();
1256  h_ele_ptEff_all->Divide(h_ele_vertexPt_all, h_matchingObjectPt, 1, 1, "b");
1257  h_ele_ptEff_all->Print();
1258  h_ele_ptEff_all->GetXaxis()->SetTitle("p_{T} (GeV/c)");
1259  h_ele_ptEff_all->GetYaxis()->SetTitle("N_{rec}/N_{matching gen jet}");
1260 
1261  // classes
1262  TH1F *h_ele_eta_goldenFrac = (TH1F *)h_ele_eta_golden->Clone("h_ele_eta_goldenFrac");
1263  h_ele_eta_goldenFrac->Reset();
1264  h_ele_eta_goldenFrac->GetXaxis()->SetTitle("|#eta|");
1265  h_ele_eta_goldenFrac->GetYaxis()->SetTitle("Fraction of electrons");
1266  h_ele_eta_goldenFrac->Divide(h_ele_eta_golden, h_ele_eta, 1, 1);
1267  h_ele_eta_goldenFrac->SetTitle("fraction of golden electrons vs eta");
1268  TH1F *h_ele_eta_bbremFrac = (TH1F *)h_ele_eta_bbrem->Clone("h_ele_eta_bbremFrac");
1269  h_ele_eta_bbremFrac->Reset();
1270  h_ele_eta_bbremFrac->Divide(h_ele_eta_bbrem, h_ele_eta, 1, 1);
1271  h_ele_eta_bbremFrac->GetXaxis()->SetTitle("|#eta|");
1272  h_ele_eta_bbremFrac->GetYaxis()->SetTitle("Fraction of electrons");
1273  h_ele_eta_bbremFrac->SetTitle("fraction of big brem electrons vs eta");
1274  TH1F *h_ele_eta_narrowFrac = (TH1F *)h_ele_eta_narrow->Clone("h_ele_eta_narrowFrac");
1275  h_ele_eta_narrowFrac->Reset();
1276  h_ele_eta_narrowFrac->Divide(h_ele_eta_narrow, h_ele_eta, 1, 1);
1277  h_ele_eta_narrowFrac->GetXaxis()->SetTitle("|#eta|");
1278  h_ele_eta_narrowFrac->GetYaxis()->SetTitle("Fraction of electrons");
1279  h_ele_eta_narrowFrac->SetTitle("fraction of narrow electrons vs eta");
1280  TH1F *h_ele_eta_showerFrac = (TH1F *)h_ele_eta_shower->Clone("h_ele_eta_showerFrac");
1281  h_ele_eta_showerFrac->Reset();
1282  h_ele_eta_showerFrac->Divide(h_ele_eta_shower, h_ele_eta, 1, 1);
1283  h_ele_eta_showerFrac->GetXaxis()->SetTitle("|#eta|");
1284  h_ele_eta_showerFrac->GetYaxis()->SetTitle("Fraction of electrons");
1285  h_ele_eta_showerFrac->SetTitle("fraction of showering electrons vs eta");
1286 
1287  // fbrem
1288  TH1F *h_ele_xOverX0VsEta = new TH1F("h_ele_xOverx0VsEta", "mean X/X_0 vs eta", nbineta / 2, 0.0, 2.5);
1289  for (int ibin = 1; ibin < h_ele_fbremVsEta_mean->GetNbinsX() + 1; ibin++) {
1290  double xOverX0 = 0.;
1291  if (h_ele_fbremVsEta_mean->GetBinContent(ibin) > 0.)
1292  xOverX0 = -log(h_ele_fbremVsEta_mean->GetBinContent(ibin));
1293  h_ele_xOverX0VsEta->SetBinContent(ibin, xOverX0);
1294  }
1295 
1296  //profiles from 2D histos
1297  TProfile *p_ele_PoPmatchingObjectVsEta = h_ele_PoPmatchingObjectVsEta->ProfileX();
1298  p_ele_PoPmatchingObjectVsEta->SetTitle("mean ele momentum / matching SC energy vs eta");
1299  p_ele_PoPmatchingObjectVsEta->GetXaxis()->SetTitle("#eta");
1300  p_ele_PoPmatchingObjectVsEta->GetYaxis()->SetTitle("<P/E_{matching gen jet}>");
1301  p_ele_PoPmatchingObjectVsEta->Write();
1302  TProfile *p_ele_PoPmatchingObjectVsPhi = h_ele_PoPmatchingObjectVsPhi->ProfileX();
1303  p_ele_PoPmatchingObjectVsPhi->SetTitle("mean ele momentum / gen momentum vs phi");
1304  p_ele_PoPmatchingObjectVsPhi->GetXaxis()->SetTitle("#phi (rad)");
1305  p_ele_PoPmatchingObjectVsPhi->GetYaxis()->SetTitle("<P/E_{matching gen jet}>");
1306  p_ele_PoPmatchingObjectVsPhi->Write();
1307  TProfile *p_ele_EtaMnEtamatchingObjectVsEta = h_ele_EtaMnEtamatchingObjectVsEta->ProfileX();
1308  p_ele_EtaMnEtamatchingObjectVsEta->GetXaxis()->SetTitle("#eta");
1309  p_ele_EtaMnEtamatchingObjectVsEta->GetYaxis()->SetTitle("<#eta_{rec} - #eta_{matching gen jet}>");
1310  p_ele_EtaMnEtamatchingObjectVsEta->Write();
1311  TProfile *p_ele_EtaMnEtamatchingObjectVsPhi = h_ele_EtaMnEtamatchingObjectVsPhi->ProfileX();
1312  p_ele_EtaMnEtamatchingObjectVsPhi->GetXaxis()->SetTitle("#phi");
1313  p_ele_EtaMnEtamatchingObjectVsPhi->GetYaxis()->SetTitle("<#eta_{rec} - #eta_{matching gen jet}>");
1314  p_ele_EtaMnEtamatchingObjectVsPhi->Write();
1315  TProfile *p_ele_PhiMnPhimatchingObjectVsEta = h_ele_PhiMnPhimatchingObjectVsEta->ProfileX();
1316  p_ele_PhiMnPhimatchingObjectVsEta->GetXaxis()->SetTitle("#eta");
1317  p_ele_PhiMnPhimatchingObjectVsEta->GetYaxis()->SetTitle("<#phi_{rec} - #phi_{matching gen jet}> (rad)");
1318  p_ele_PhiMnPhimatchingObjectVsEta->Write();
1319  TProfile *p_ele_PhiMnPhimatchingObjectVsPhi = h_ele_PhiMnPhimatchingObjectVsPhi->ProfileX();
1320  p_ele_PhiMnPhimatchingObjectVsPhi->GetXaxis()->SetTitle("#phi");
1321  p_ele_PhiMnPhimatchingObjectVsPhi->GetYaxis()->SetTitle("<#phi_{rec} - #phi_{matching gen jet}> (rad)");
1322  p_ele_PhiMnPhimatchingObjectVsPhi->Write();
1323  TProfile *p_ele_vertexPtVsEta = h_ele_vertexPtVsEta->ProfileX();
1324  p_ele_vertexPtVsEta->GetXaxis()->SetTitle("#eta");
1325  p_ele_vertexPtVsEta->GetYaxis()->SetTitle("<p_{T}> (GeV/c)");
1326  p_ele_vertexPtVsEta->Write();
1327  TProfile *p_ele_vertexPtVsPhi = h_ele_vertexPtVsPhi->ProfileX();
1328  p_ele_vertexPtVsPhi->GetXaxis()->SetTitle("#phi (rad)");
1329  p_ele_vertexPtVsPhi->GetYaxis()->SetTitle("<p_{T}> (GeV/c)");
1330  p_ele_vertexPtVsPhi->Write();
1331  TProfile *p_ele_EoPVsEta = h_ele_EoPVsEta->ProfileX();
1332  p_ele_EoPVsEta->GetXaxis()->SetTitle("#eta");
1333  p_ele_EoPVsEta->GetYaxis()->SetTitle("<E/P_{vertex}>");
1334  p_ele_EoPVsEta->Write();
1335  TProfile *p_ele_EoPVsPhi = h_ele_EoPVsPhi->ProfileX();
1336  p_ele_EoPVsPhi->GetXaxis()->SetTitle("#phi (rad)");
1337  p_ele_EoPVsPhi->GetYaxis()->SetTitle("<E/P_{vertex}>");
1338  p_ele_EoPVsPhi->Write();
1339  TProfile *p_ele_EoPoutVsEta = h_ele_EoPoutVsEta->ProfileX();
1340  p_ele_EoPoutVsEta->GetXaxis()->SetTitle("#eta");
1341  p_ele_EoPoutVsEta->GetYaxis()->SetTitle("<E_{seed}/P_{out}>");
1342  p_ele_EoPoutVsEta->Write();
1343  TProfile *p_ele_EoPoutVsPhi = h_ele_EoPoutVsPhi->ProfileX();
1344  p_ele_EoPoutVsPhi->GetXaxis()->SetTitle("#phi (rad)");
1345  p_ele_EoPoutVsPhi->GetYaxis()->SetTitle("<E_{seed}/P_{out}>");
1346  p_ele_EoPoutVsPhi->Write();
1347  TProfile *p_ele_EeleOPoutVsEta = h_ele_EeleOPoutVsEta->ProfileX();
1348  p_ele_EeleOPoutVsEta->SetTitle("mean ele Eele/pout vs eta");
1349  p_ele_EeleOPoutVsEta->GetXaxis()->SetTitle("#eta");
1350  p_ele_EeleOPoutVsEta->GetYaxis()->SetTitle("<E_{ele}/P_{out}>");
1351  p_ele_EeleOPoutVsEta->Write();
1352  TProfile *p_ele_EeleOPoutVsPhi = h_ele_EeleOPoutVsPhi->ProfileX();
1353  p_ele_EeleOPoutVsPhi->SetTitle("mean ele Eele/pout vs phi");
1354  p_ele_EeleOPoutVsPhi->GetXaxis()->SetTitle("#phi (rad)");
1355  p_ele_EeleOPoutVsPhi->GetYaxis()->SetTitle("<E_{ele}/P_{out}>");
1356  p_ele_EeleOPoutVsPhi->Write();
1357  TProfile *p_ele_HoEVsEta = h_ele_HoEVsEta->ProfileX();
1358  p_ele_HoEVsEta->GetXaxis()->SetTitle("#eta");
1359  p_ele_HoEVsEta->GetYaxis()->SetTitle("<H/E>");
1360  p_ele_HoEVsEta->Write();
1361  TProfile *p_ele_HoEVsPhi = h_ele_HoEVsPhi->ProfileX();
1362  p_ele_HoEVsPhi->GetXaxis()->SetTitle("#phi (rad)");
1363  p_ele_HoEVsPhi->GetYaxis()->SetTitle("<H/E>");
1364  p_ele_HoEVsPhi->Write();
1365  TProfile *p_ele_chi2VsEta = h_ele_chi2VsEta->ProfileX();
1366  p_ele_chi2VsEta->GetXaxis()->SetTitle("#eta");
1367  p_ele_chi2VsEta->GetYaxis()->SetTitle("<#Chi^{2}>");
1368  p_ele_chi2VsEta->Write();
1369  TProfile *p_ele_chi2VsPhi = h_ele_chi2VsPhi->ProfileX();
1370  p_ele_chi2VsPhi->GetXaxis()->SetTitle("#phi (rad)");
1371  p_ele_chi2VsPhi->GetYaxis()->SetTitle("<#Chi^{2}>");
1372  p_ele_chi2VsPhi->Write();
1373  TProfile *p_ele_foundHitsVsEta = h_ele_foundHitsVsEta->ProfileX();
1374  p_ele_foundHitsVsEta->GetXaxis()->SetTitle("#eta");
1375  p_ele_foundHitsVsEta->GetYaxis()->SetTitle("<N_{hits}>");
1376  p_ele_foundHitsVsEta->Write();
1377  TProfile *p_ele_foundHitsVsPhi = h_ele_foundHitsVsPhi->ProfileX();
1378  p_ele_foundHitsVsPhi->GetXaxis()->SetTitle("#phi (rad)");
1379  p_ele_foundHitsVsPhi->GetYaxis()->SetTitle("<N_{hits}>");
1380  p_ele_foundHitsVsPhi->Write();
1381  TProfile *p_ele_lostHitsVsEta = h_ele_lostHitsVsEta->ProfileX();
1382  p_ele_lostHitsVsEta->GetXaxis()->SetTitle("#eta");
1383  p_ele_lostHitsVsEta->GetYaxis()->SetTitle("<N_{hits}>");
1384  p_ele_lostHitsVsEta->Write();
1385  TProfile *p_ele_lostHitsVsPhi = h_ele_lostHitsVsPhi->ProfileX();
1386  p_ele_lostHitsVsPhi->GetXaxis()->SetTitle("#phi (rad)");
1387  p_ele_lostHitsVsPhi->GetYaxis()->SetTitle("<N_{hits}>");
1388  p_ele_lostHitsVsPhi->Write();
1389  TProfile *p_ele_vertexTIPVsEta = h_ele_vertexTIPVsEta->ProfileX();
1390  p_ele_vertexTIPVsEta->SetTitle("mean tip (wrt gen vtx) vs eta");
1391  p_ele_vertexTIPVsEta->GetXaxis()->SetTitle("#eta");
1392  p_ele_vertexTIPVsEta->GetYaxis()->SetTitle("<TIP> (cm)");
1393  p_ele_vertexTIPVsEta->Write();
1394  TProfile *p_ele_vertexTIPVsPhi = h_ele_vertexTIPVsPhi->ProfileX();
1395  p_ele_vertexTIPVsPhi->SetTitle("mean tip (wrt gen vtx) vs phi");
1396  p_ele_vertexTIPVsPhi->GetXaxis()->SetTitle("#phi");
1397  p_ele_vertexTIPVsPhi->GetYaxis()->SetTitle("<TIP> (cm)");
1398  p_ele_vertexTIPVsPhi->Write();
1399  TProfile *p_ele_vertexTIPVsPt = h_ele_vertexTIPVsPt->ProfileX();
1400  p_ele_vertexTIPVsPt->SetTitle("mean tip (wrt gen vtx) vs phi");
1401  p_ele_vertexTIPVsPt->GetXaxis()->SetTitle("p_{T} (GeV/c)");
1402  p_ele_vertexTIPVsPt->GetYaxis()->SetTitle("<TIP> (cm)");
1403  p_ele_vertexTIPVsPt->Write();
1404 
1405  // mc truth
1406 
1407  h_matchingObjectNum->Write();
1408 
1409  // rec event
1410 
1411  histNum_->Write();
1412 
1413  // mc
1414  h_matchingObjectEta->Write();
1415  h_matchingObjectAbsEta->Write();
1416  h_matchingObjectP->Write();
1417  h_matchingObjectPt->Write();
1418  h_matchingObjectPhi->Write();
1419  h_matchingObjectZ->Write();
1420 
1421  // all electrons
1422  h_ele_EoverP_all->Write();
1423  h_ele_EseedOP_all->Write();
1424  h_ele_EoPout_all->Write();
1425  h_ele_EeleOPout_all->Write();
1426  h_ele_dEtaSc_propVtx_all->Write();
1427  h_ele_dPhiSc_propVtx_all->Write();
1428  h_ele_dEtaCl_propOut_all->Write();
1429  h_ele_dPhiCl_propOut_all->Write();
1430  h_ele_HoE_all->Write();
1431  h_ele_TIP_all->Write();
1432  h_ele_vertexPt_all->Write();
1433  h_ele_vertexEta_all->Write();
1434  h_ele_mee_all->Write();
1435  h_ele_mee_os->Write();
1436  h_ele_E2mnE1vsMee_all->Write();
1437  h_ele_E2mnE1vsMee_egeg_all->Write();
1438 
1439  // matched electrons
1440  h_ele_charge->Write();
1441  h_ele_chargeVsEta->Write();
1442  h_ele_chargeVsPhi->Write();
1443  h_ele_chargeVsPt->Write();
1444  h_ele_vertexP->Write();
1445  h_ele_vertexPt->Write();
1446  h_ele_vertexPtVsEta->Write();
1447  h_ele_vertexPtVsPhi->Write();
1449  h_ele_vertexEta->Write();
1450  h_ele_vertexEtaVsPhi->Write();
1453  h_ele_vertexPhi->Write();
1455  h_ele_vertexX->Write();
1456  h_ele_vertexY->Write();
1457  h_ele_vertexZ->Write();
1458  h_ele_vertexTIP->Write();
1460  h_ele_vertexTIPVsEta->Write();
1461  h_ele_vertexTIPVsPhi->Write();
1462  h_ele_vertexTIPVsPt->Write();
1463  h_ele_PoPmatchingObject->Write();
1466  h_ele_PoPmatchingObjectVsPt->Write();
1478 
1479  // matched electron, superclusters
1480  histSclEn_->Write();
1483  histSclEt_->Write();
1484  histSclEtVsEta_->Write();
1485  histSclEtVsPhi_->Write();
1486  histSclEtaVsPhi_->Write();
1487  histSclEta_->Write();
1488  histSclPhi_->Write();
1489  histSclSigIEtaIEta_->Write();
1490  histSclSigIEtaIEta_barrel_->Write();
1491  histSclSigIEtaIEta_endcaps_->Write();
1492  histSclE1x5_->Write();
1493  histSclE1x5_barrel_->Write();
1494  histSclE1x5_endcaps_->Write();
1495  histSclE2x5max_->Write();
1496  histSclE2x5max_barrel_->Write();
1497  histSclE2x5max_endcaps_->Write();
1498  histSclE5x5_->Write();
1499  histSclE5x5_barrel_->Write();
1500  histSclE5x5_endcaps_->Write();
1501 
1502  // matched electron, gsf tracks
1503  h_ele_ambiguousTracks->Write();
1504  h_ele_ambiguousTracksVsEta->Write();
1505  h_ele_ambiguousTracksVsPhi->Write();
1506  h_ele_ambiguousTracksVsPt->Write();
1507  h_ele_foundHits->Write();
1508  h_ele_foundHitsVsEta->Write();
1509  h_ele_foundHitsVsPhi->Write();
1510  h_ele_foundHitsVsPt->Write();
1511  h_ele_lostHits->Write();
1512  h_ele_lostHitsVsEta->Write();
1513  h_ele_lostHitsVsPhi->Write();
1514  h_ele_lostHitsVsPt->Write();
1515  h_ele_chi2->Write();
1516  h_ele_chi2VsEta->Write();
1517  h_ele_chi2VsPhi->Write();
1518  h_ele_chi2VsPt->Write();
1519  h_ele_PinMnPout->Write();
1520  h_ele_PinMnPout_mode->Write();
1521  h_ele_PinMnPoutVsEta_mode->Write();
1522  h_ele_PinMnPoutVsPhi_mode->Write();
1523  h_ele_PinMnPoutVsPt_mode->Write();
1524  h_ele_PinMnPoutVsE_mode->Write();
1525  h_ele_PinMnPoutVsChi2_mode->Write();
1526  h_ele_outerP->Write();
1527  h_ele_outerP_mode->Write();
1528  h_ele_outerPVsEta_mode->Write();
1529  h_ele_outerPt->Write();
1530  h_ele_outerPt_mode->Write();
1531  h_ele_outerPtVsEta_mode->Write();
1532  h_ele_outerPtVsPhi_mode->Write();
1533  h_ele_outerPtVsPt_mode->Write();
1534 
1535  // matched electrons, matching
1536  h_ele_EoP->Write();
1537  h_ele_EoP_eg->Write();
1538  h_ele_EoP_barrel->Write();
1539  h_ele_EoP_eg_barrel->Write();
1540  h_ele_EoP_endcaps->Write();
1541  h_ele_EoP_eg_endcaps->Write();
1542  h_ele_EoPVsEta->Write();
1543  h_ele_EoPVsPhi->Write();
1544  h_ele_EoPVsE->Write();
1545  h_ele_EseedOP->Write();
1546  h_ele_EseedOP_eg->Write();
1547  h_ele_EseedOP_barrel->Write();
1548  h_ele_EseedOP_eg_barrel->Write();
1549  h_ele_EseedOP_endcaps->Write();
1550  h_ele_EseedOP_eg_endcaps->Write();
1551  h_ele_EseedOPVsEta->Write();
1552  h_ele_EseedOPVsPhi->Write();
1553  h_ele_EseedOPVsE->Write();
1554  h_ele_EoPout->Write();
1555  h_ele_EoPout_eg->Write();
1556  h_ele_EoPout_barrel->Write();
1557  h_ele_EoPout_eg_barrel->Write();
1558  h_ele_EoPout_endcaps->Write();
1559  h_ele_EoPout_eg_endcaps->Write();
1560  h_ele_EoPoutVsEta->Write();
1561  h_ele_EoPoutVsPhi->Write();
1562  h_ele_EoPoutVsE->Write();
1563  h_ele_EeleOPout->Write();
1564  h_ele_EeleOPout_eg->Write();
1565  h_ele_EeleOPout_barrel->Write();
1566  h_ele_EeleOPout_eg_barrel->Write();
1567  h_ele_EeleOPout_endcaps->Write();
1568  h_ele_EeleOPout_eg_endcaps->Write();
1569  h_ele_EeleOPoutVsEta->Write();
1570  h_ele_EeleOPoutVsPhi->Write();
1571  h_ele_EeleOPoutVsE->Write();
1572  h_ele_dEtaSc_propVtx->Write();
1573  h_ele_dEtaSc_propVtx_eg->Write();
1574  h_ele_dEtaSc_propVtx_barrel->Write();
1578  h_ele_dEtaScVsEta_propVtx->Write();
1579  h_ele_dEtaScVsPhi_propVtx->Write();
1580  h_ele_dEtaScVsPt_propVtx->Write();
1581  h_ele_dPhiSc_propVtx->Write();
1582  h_ele_dPhiSc_propVtx_eg->Write();
1583  h_ele_dPhiSc_propVtx_barrel->Write();
1587  h_ele_dPhiScVsEta_propVtx->Write();
1588  h_ele_dPhiScVsPhi_propVtx->Write();
1589  h_ele_dPhiScVsPt_propVtx->Write();
1590  h_ele_dEtaCl_propOut->Write();
1591  h_ele_dEtaCl_propOut_eg->Write();
1592  h_ele_dEtaCl_propOut_barrel->Write();
1596  h_ele_dEtaClVsEta_propOut->Write();
1597  h_ele_dEtaClVsPhi_propOut->Write();
1598  h_ele_dEtaClVsPt_propOut->Write();
1599  h_ele_dPhiCl_propOut->Write();
1600  h_ele_dPhiCl_propOut_eg->Write();
1601  h_ele_dPhiCl_propOut_barrel->Write();
1605  h_ele_dPhiClVsEta_propOut->Write();
1606  h_ele_dPhiClVsPhi_propOut->Write();
1607  h_ele_dPhiClVsPt_propOut->Write();
1608  h_ele_dEtaEleCl_propOut->Write();
1609  h_ele_dEtaEleCl_propOut_eg->Write();
1616  h_ele_dEtaEleClVsPt_propOut->Write();
1617  h_ele_dPhiEleCl_propOut->Write();
1618  h_ele_dPhiEleCl_propOut_eg->Write();
1625  h_ele_dPhiEleClVsPt_propOut->Write();
1626  h_ele_HoE->Write();
1627  h_ele_HoE_eg->Write();
1628  h_ele_HoE_barrel->Write();
1629  h_ele_HoE_eg_barrel->Write();
1630  h_ele_HoE_endcaps->Write();
1631  h_ele_HoE_eg_endcaps->Write();
1632  h_ele_HoE_fiducial->Write();
1633  h_ele_HoEVsEta->Write();
1634  h_ele_HoEVsPhi->Write();
1635  h_ele_HoEVsE->Write();
1636 
1637  h_ele_seed_dphi2_->Write();
1638  h_ele_seed_subdet2_->Write();
1639  TProfile *p_ele_seed_dphi2VsEta_ = h_ele_seed_dphi2VsEta_->ProfileX();
1640  p_ele_seed_dphi2VsEta_->SetTitle("mean ele seed dphi 2nd layer vs eta");
1641  p_ele_seed_dphi2VsEta_->GetXaxis()->SetTitle("#eta");
1642  p_ele_seed_dphi2VsEta_->GetYaxis()->SetTitle("<#phi_{pred} - #phi_{hit}, 2nd layer> (rad)");
1643  p_ele_seed_dphi2VsEta_->SetMinimum(-0.004);
1644  p_ele_seed_dphi2VsEta_->SetMaximum(0.004);
1645  p_ele_seed_dphi2VsEta_->Write();
1646  TProfile *p_ele_seed_dphi2VsPt_ = h_ele_seed_dphi2VsPt_->ProfileX();
1647  p_ele_seed_dphi2VsPt_->SetTitle("mean ele seed dphi 2nd layer vs pt");
1648  p_ele_seed_dphi2VsPt_->GetXaxis()->SetTitle("p_{T} (GeV/c)");
1649  p_ele_seed_dphi2VsPt_->GetYaxis()->SetTitle("<#phi_{pred} - #phi_{hit}, 2nd layer> (rad)");
1650  p_ele_seed_dphi2VsPt_->SetMinimum(-0.004);
1651  p_ele_seed_dphi2VsPt_->SetMaximum(0.004);
1652  p_ele_seed_dphi2VsPt_->Write();
1653  h_ele_seed_drz2_->Write();
1654  TProfile *p_ele_seed_drz2VsEta_ = h_ele_seed_drz2VsEta_->ProfileX();
1655  p_ele_seed_drz2VsEta_->SetTitle("mean ele seed dr(dz) 2nd layer vs eta");
1656  p_ele_seed_drz2VsEta_->GetXaxis()->SetTitle("#eta");
1657  p_ele_seed_drz2VsEta_->GetYaxis()->SetTitle("<r(z)_{pred} - r(z)_{hit}, 2nd layer> (cm)");
1658  p_ele_seed_drz2VsEta_->SetMinimum(-0.15);
1659  p_ele_seed_drz2VsEta_->SetMaximum(0.15);
1660  p_ele_seed_drz2VsEta_->Write();
1661  TProfile *p_ele_seed_drz2VsPt_ = h_ele_seed_drz2VsPt_->ProfileX();
1662  p_ele_seed_drz2VsPt_->SetTitle("mean ele seed dr(dz) 2nd layer vs pt");
1663  p_ele_seed_drz2VsPt_->GetXaxis()->SetTitle("p_{T} (GeV/c)");
1664  p_ele_seed_drz2VsPt_->GetYaxis()->SetTitle("<r(z)_{pred} - r(z)_{hit}, 2nd layer> (cm)");
1665  p_ele_seed_drz2VsPt_->SetMinimum(-0.15);
1666  p_ele_seed_drz2VsPt_->SetMaximum(0.15);
1667  p_ele_seed_drz2VsPt_->Write();
1668 
1669  // classes
1670  h_ele_classes->Write();
1671  h_ele_eta->Write();
1672  h_ele_eta_golden->Write();
1673  h_ele_eta_bbrem->Write();
1674  h_ele_eta_narrow->Write();
1675  h_ele_eta_shower->Write();
1676  h_ele_PinVsPoutGolden_mode->Write();
1678  h_ele_PinVsPoutGolden_mean->Write();
1688 
1689  // fbrem
1690  h_ele_fbrem->Write();
1691  h_ele_fbremVsEta_mode->Write();
1692  h_ele_fbremVsEta_mean->Write();
1693  h_ele_etaEff->Write();
1694  h_ele_zEff->Write();
1695  h_ele_phiEff->Write();
1696  h_ele_absetaEff->Write();
1697  h_ele_ptEff->Write();
1698  h_ele_etaEff_all->Write();
1699  h_ele_ptEff_all->Write();
1700  h_ele_eta_goldenFrac->Write();
1701  h_ele_eta_bbremFrac->Write();
1702  h_ele_eta_narrowFrac->Write();
1703  h_ele_eta_showerFrac->Write();
1704  h_ele_xOverX0VsEta->Write();
1705 
1706  // e/g et pflow electrons
1707  h_ele_mva->Write();
1708  h_ele_provenance->Write();
1709 
1710  // isolation
1711  h_ele_tkSumPt_dr03->GetXaxis()->SetTitle("TkIsoSum, cone 0.3 (GeV/c)");
1712  h_ele_tkSumPt_dr03->GetYaxis()->SetTitle("Events");
1713  h_ele_tkSumPt_dr03->Write();
1714  h_ele_ecalRecHitSumEt_dr03->GetXaxis()->SetTitle("EcalIsoSum, cone 0.3 (GeV)");
1715  h_ele_ecalRecHitSumEt_dr03->GetYaxis()->SetTitle("Events");
1716  h_ele_ecalRecHitSumEt_dr03->Write();
1717  h_ele_hcalDepth1TowerSumEt_dr03->GetXaxis()->SetTitle("Hcal1IsoSum, cone 0.3 (GeV)");
1718  h_ele_hcalDepth1TowerSumEt_dr03->GetYaxis()->SetTitle("Events");
1720  h_ele_hcalDepth2TowerSumEt_dr03->GetXaxis()->SetTitle("Hcal2IsoSum, cone 0.3 (GeV)");
1721  h_ele_hcalDepth2TowerSumEt_dr03->GetYaxis()->SetTitle("Events");
1723  h_ele_tkSumPt_dr04->GetXaxis()->SetTitle("TkIsoSum, cone 0.4 (GeV/c)");
1724  h_ele_tkSumPt_dr04->GetYaxis()->SetTitle("Events");
1725  h_ele_tkSumPt_dr04->Write();
1726  h_ele_ecalRecHitSumEt_dr04->GetXaxis()->SetTitle("EcalIsoSum, cone 0.4 (GeV)");
1727  h_ele_ecalRecHitSumEt_dr04->GetYaxis()->SetTitle("Events");
1728  h_ele_ecalRecHitSumEt_dr04->Write();
1729  h_ele_hcalDepth1TowerSumEt_dr04->GetXaxis()->SetTitle("Hcal1IsoSum, cone 0.4 (GeV)");
1730  h_ele_hcalDepth1TowerSumEt_dr04->GetYaxis()->SetTitle("Events");
1732  h_ele_hcalDepth2TowerSumEt_dr04->GetXaxis()->SetTitle("Hcal2IsoSum, cone 0.4 (GeV)");
1733  h_ele_hcalDepth2TowerSumEt_dr04->GetYaxis()->SetTitle("Events");
1735 }

Member Data Documentation

edm::InputTag GsfElectronMCFakeAnalyzer::beamSpot_
private

Definition at line 48 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze().

double GsfElectronMCFakeAnalyzer::deltaR_
private

Definition at line 62 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), and GsfElectronMCFakeAnalyzer().

double GsfElectronMCFakeAnalyzer::detamatchmax
private

Definition at line 91 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

double GsfElectronMCFakeAnalyzer::detamatchmin
private

Definition at line 90 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

double GsfElectronMCFakeAnalyzer::detamax
private

Definition at line 87 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

double GsfElectronMCFakeAnalyzer::detamin
private

Definition at line 86 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

double GsfElectronMCFakeAnalyzer::dphimatchmax
private

Definition at line 102 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

double GsfElectronMCFakeAnalyzer::dphimatchmin
private

Definition at line 101 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

double GsfElectronMCFakeAnalyzer::dphimax
private

Definition at line 98 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

double GsfElectronMCFakeAnalyzer::dphimin
private

Definition at line 97 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

edm::InputTag GsfElectronMCFakeAnalyzer::electronCollection_
private

Definition at line 46 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), and GsfElectronMCFakeAnalyzer().

double GsfElectronMCFakeAnalyzer::eopmax
private

Definition at line 105 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

double GsfElectronMCFakeAnalyzer::eopmaxsht
private

Definition at line 106 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

double GsfElectronMCFakeAnalyzer::etamax
private

Definition at line 84 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

double GsfElectronMCFakeAnalyzer::etamin
private

Definition at line 83 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

double GsfElectronMCFakeAnalyzer::fhitsmax
private

Definition at line 78 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_ambiguousTracks
private

Definition at line 196 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_ambiguousTracksVsEta
private

Definition at line 197 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_ambiguousTracksVsPhi
private

Definition at line 198 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_ambiguousTracksVsPt
private

Definition at line 199 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_charge
private

Definition at line 149 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_chargeVsEta
private

Definition at line 150 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_chargeVsPhi
private

Definition at line 151 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_chargeVsPt
private

Definition at line 152 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_chi2
private

Definition at line 212 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_chi2_barrel
private

Definition at line 213 of file GsfElectronMCFakeAnalyzer.h.

TH1F* GsfElectronMCFakeAnalyzer::h_ele_chi2_endcaps
private

Definition at line 214 of file GsfElectronMCFakeAnalyzer.h.

TH2F* GsfElectronMCFakeAnalyzer::h_ele_chi2VsEta
private

Definition at line 215 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_chi2VsPhi
private

Definition at line 216 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_chi2VsPt
private

Definition at line 217 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_classes
private

Definition at line 351 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dEtaCl_propOut
private

Definition at line 306 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dEtaCl_propOut_all
private

Definition at line 131 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dEtaCl_propOut_barrel
private

Definition at line 307 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dEtaCl_propOut_eg
private

Definition at line 309 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dEtaCl_propOut_eg_barrel
private

Definition at line 310 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dEtaCl_propOut_eg_endcaps
private

Definition at line 311 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dEtaCl_propOut_endcaps
private

Definition at line 308 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_dEtaClVsEta_propOut
private

Definition at line 312 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_dEtaClVsPhi_propOut
private

Definition at line 313 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_dEtaClVsPt_propOut
private

Definition at line 314 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dEtaEleCl_propOut
private

Definition at line 324 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dEtaEleCl_propOut_barrel
private

Definition at line 325 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dEtaEleCl_propOut_eg
private

Definition at line 327 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dEtaEleCl_propOut_eg_barrel
private

Definition at line 328 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dEtaEleCl_propOut_eg_endcaps
private

Definition at line 329 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dEtaEleCl_propOut_endcaps
private

Definition at line 326 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_dEtaEleClVsEta_propOut
private

Definition at line 330 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_dEtaEleClVsPhi_propOut
private

Definition at line 331 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_dEtaEleClVsPt_propOut
private

Definition at line 332 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dEtaSc_propVtx
private

Definition at line 288 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dEtaSc_propVtx_all
private

Definition at line 129 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dEtaSc_propVtx_barrel
private

Definition at line 289 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dEtaSc_propVtx_eg
private

Definition at line 291 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dEtaSc_propVtx_eg_barrel
private

Definition at line 292 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dEtaSc_propVtx_eg_endcaps
private

Definition at line 293 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dEtaSc_propVtx_endcaps
private

Definition at line 290 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_dEtaScVsEta_propVtx
private

Definition at line 294 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_dEtaScVsPhi_propVtx
private

Definition at line 295 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_dEtaScVsPt_propVtx
private

Definition at line 296 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dPhiCl_propOut
private

Definition at line 315 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dPhiCl_propOut_all
private

Definition at line 132 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dPhiCl_propOut_barrel
private

Definition at line 316 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dPhiCl_propOut_eg
private

Definition at line 318 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dPhiCl_propOut_eg_barrel
private

Definition at line 319 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dPhiCl_propOut_eg_endcaps
private

Definition at line 320 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dPhiCl_propOut_endcaps
private

Definition at line 317 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_dPhiClVsEta_propOut
private

Definition at line 321 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_dPhiClVsPhi_propOut
private

Definition at line 322 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_dPhiClVsPt_propOut
private

Definition at line 323 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dPhiEleCl_propOut
private

Definition at line 333 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dPhiEleCl_propOut_barrel
private

Definition at line 334 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dPhiEleCl_propOut_eg
private

Definition at line 336 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dPhiEleCl_propOut_eg_barrel
private

Definition at line 337 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dPhiEleCl_propOut_eg_endcaps
private

Definition at line 338 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dPhiEleCl_propOut_endcaps
private

Definition at line 335 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_dPhiEleClVsEta_propOut
private

Definition at line 339 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_dPhiEleClVsPhi_propOut
private

Definition at line 340 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_dPhiEleClVsPt_propOut
private

Definition at line 341 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dPhiSc_propVtx
private

Definition at line 297 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dPhiSc_propVtx_all
private

Definition at line 130 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dPhiSc_propVtx_barrel
private

Definition at line 298 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dPhiSc_propVtx_eg
private

Definition at line 300 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dPhiSc_propVtx_eg_barrel
private

Definition at line 301 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dPhiSc_propVtx_eg_endcaps
private

Definition at line 302 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_dPhiSc_propVtx_endcaps
private

Definition at line 299 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_dPhiScVsEta_propVtx
private

Definition at line 303 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_dPhiScVsPhi_propVtx
private

Definition at line 304 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_dPhiScVsPt_propVtx
private

Definition at line 305 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_E2mnE1vsMee_all
private

Definition at line 140 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_E2mnE1vsMee_egeg_all
private

Definition at line 141 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_ecalRecHitSumEt_dr03
private

Definition at line 390 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_ecalRecHitSumEt_dr04
private

Definition at line 394 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_EeleOPout
private

Definition at line 278 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_EeleOPout_all
private

Definition at line 128 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_EeleOPout_barrel
private

Definition at line 279 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_EeleOPout_eg
private

Definition at line 281 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_EeleOPout_eg_barrel
private

Definition at line 282 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_EeleOPout_eg_endcaps
private

Definition at line 283 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_EeleOPout_endcaps
private

Definition at line 280 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_EeleOPoutVsE
private

Definition at line 286 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_EeleOPoutVsEta
private

Definition at line 284 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_EeleOPoutVsPhi
private

Definition at line 285 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_EoP
private

Definition at line 251 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_EoP_barrel
private

Definition at line 252 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_EoP_eg
private

Definition at line 254 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_EoP_eg_barrel
private

Definition at line 255 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_EoP_eg_endcaps
private

Definition at line 256 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_EoP_endcaps
private

Definition at line 253 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_EoPout
private

Definition at line 269 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_EoPout_all
private

Definition at line 127 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_EoPout_barrel
private

Definition at line 270 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_EoPout_eg
private

Definition at line 272 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_EoPout_eg_barrel
private

Definition at line 273 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_EoPout_eg_endcaps
private

Definition at line 274 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_EoPout_endcaps
private

Definition at line 271 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_EoPoutVsE
private

Definition at line 277 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_EoPoutVsEta
private

Definition at line 275 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_EoPoutVsPhi
private

Definition at line 276 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_EoPVsE
private

Definition at line 259 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_EoPVsEta
private

Definition at line 257 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_EoPVsPhi
private

Definition at line 258 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_EoverP_all
private

Definition at line 125 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_EseedOP
private

Definition at line 260 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_EseedOP_all
private

Definition at line 126 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_EseedOP_barrel
private

Definition at line 261 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_EseedOP_eg
private

Definition at line 263 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_EseedOP_eg_barrel
private

Definition at line 264 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_EseedOP_eg_endcaps
private

Definition at line 265 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_EseedOP_endcaps
private

Definition at line 262 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_EseedOPVsE
private

Definition at line 268 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_EseedOPVsEta
private

Definition at line 266 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_EseedOPVsPhi
private

Definition at line 267 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_eta
private

Definition at line 352 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_eta_bbrem
private

Definition at line 354 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_eta_golden
private

Definition at line 353 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_eta_narrow
private

Definition at line 355 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_eta_shower
private

Definition at line 356 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_EtaMnEtamatchingObject
private

Definition at line 225 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_EtaMnEtamatchingObjectVsEta
private

Definition at line 226 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_EtaMnEtamatchingObjectVsPhi
private

Definition at line 227 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_EtaMnEtamatchingObjectVsPt
private

Definition at line 228 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_fbrem
private

Definition at line 369 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TProfile* GsfElectronMCFakeAnalyzer::h_ele_fbremVsEta_mean
private

Definition at line 371 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TProfile* GsfElectronMCFakeAnalyzer::h_ele_fbremVsEta_mode
private

Definition at line 370 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_foundHits
private

Definition at line 200 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_foundHits_barrel
private

Definition at line 201 of file GsfElectronMCFakeAnalyzer.h.

TH1F* GsfElectronMCFakeAnalyzer::h_ele_foundHits_endcaps
private

Definition at line 202 of file GsfElectronMCFakeAnalyzer.h.

TH2F* GsfElectronMCFakeAnalyzer::h_ele_foundHitsVsEta
private

Definition at line 203 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_foundHitsVsPhi
private

Definition at line 204 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_foundHitsVsPt
private

Definition at line 205 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_hcalDepth1TowerSumEt_dr03
private

Definition at line 391 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_hcalDepth1TowerSumEt_dr04
private

Definition at line 395 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_hcalDepth2TowerSumEt_dr03
private

Definition at line 392 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_hcalDepth2TowerSumEt_dr04
private

Definition at line 396 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_HoE
private

Definition at line 358 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_HoE_all
private

Definition at line 134 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_HoE_barrel
private

Definition at line 359 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_HoE_eg
private

Definition at line 361 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_HoE_eg_barrel
private

Definition at line 362 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_HoE_eg_endcaps
private

Definition at line 363 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_HoE_endcaps
private

Definition at line 360 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_HoE_fiducial
private

Definition at line 364 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_HoEVsE
private

Definition at line 367 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_HoEVsEta
private

Definition at line 365 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_HoEVsPhi
private

Definition at line 366 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_lostHits
private

Definition at line 206 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_lostHits_barrel
private

Definition at line 207 of file GsfElectronMCFakeAnalyzer.h.

TH1F* GsfElectronMCFakeAnalyzer::h_ele_lostHits_endcaps
private

Definition at line 208 of file GsfElectronMCFakeAnalyzer.h.

TH2F* GsfElectronMCFakeAnalyzer::h_ele_lostHitsVsEta
private

Definition at line 209 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_lostHitsVsPhi
private

Definition at line 210 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_lostHitsVsPt
private

Definition at line 211 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_matchingObjectAbsEta_matched
private

Definition at line 144 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_matchingObjectEta_matched
private

Definition at line 143 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_matchingObjectPhi_matched
private

Definition at line 146 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_matchingObjectPt_matched
private

Definition at line 145 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_matchingObjectZ_matched
private

Definition at line 147 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_mee_all
private

Definition at line 137 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_mee_os
private

Definition at line 138 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_mva
private

Definition at line 386 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_outerP
private

Definition at line 243 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_outerP_mode
private

Definition at line 244 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_outerPt
private

Definition at line 246 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_outerPt_mode
private

Definition at line 247 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_outerPtVsEta_mode
private

Definition at line 248 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_outerPtVsPhi_mode
private

Definition at line 249 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_outerPtVsPt_mode
private

Definition at line 250 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_outerPVsEta_mode
private

Definition at line 245 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_PhiMnPhimatchingObject
private

Definition at line 229 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_PhiMnPhimatchingObject2
private

Definition at line 230 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_PhiMnPhimatchingObjectVsEta
private

Definition at line 231 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_PhiMnPhimatchingObjectVsPhi
private

Definition at line 232 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_PhiMnPhimatchingObjectVsPt
private

Definition at line 233 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_PinMnPout
private

Definition at line 235 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_PinMnPout_mode
private

Definition at line 236 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_PinMnPoutVsChi2_mode
private

Definition at line 241 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_PinMnPoutVsE_mode
private

Definition at line 240 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_PinMnPoutVsEta_mode
private

Definition at line 237 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_PinMnPoutVsPhi_mode
private

Definition at line 238 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_PinMnPoutVsPt_mode
private

Definition at line 239 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_PinVsPoutGolden_mean
private

Definition at line 375 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_PinVsPoutGolden_mode
private

Definition at line 373 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_PinVsPoutShowering_mean
private

Definition at line 376 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_PinVsPoutShowering_mode
private

Definition at line 374 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_PoPmatchingObject
private

Definition at line 219 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_PoPmatchingObject_barrel
private

Definition at line 223 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_PoPmatchingObject_endcaps
private

Definition at line 224 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_PoPmatchingObjectVsEta
private

Definition at line 220 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_PoPmatchingObjectVsPhi
private

Definition at line 221 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_PoPmatchingObjectVsPt
private

Definition at line 222 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_provenance
private

Definition at line 387 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_PtinVsPtoutGolden_mean
private

Definition at line 379 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_PtinVsPtoutGolden_mode
private

Definition at line 377 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_PtinVsPtoutShowering_mean
private

Definition at line 380 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_PtinVsPtoutShowering_mode
private

Definition at line 378 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_seed_dphi2_
private

Definition at line 343 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_seed_dphi2VsEta_
private

Definition at line 344 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_seed_dphi2VsPt_
private

Definition at line 345 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_seed_drz2_
private

Definition at line 346 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_seed_drz2VsEta_
private

Definition at line 347 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_seed_drz2VsPt_
private

Definition at line 348 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_seed_subdet2_
private

Definition at line 349 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_TIP_all
private

Definition at line 133 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_tkSumPt_dr03
private

Definition at line 389 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_tkSumPt_dr04
private

Definition at line 393 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_vertexAbsEta
private

Definition at line 159 of file GsfElectronMCFakeAnalyzer.h.

TH1F* GsfElectronMCFakeAnalyzer::h_ele_vertexEta
private

Definition at line 157 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_vertexEta_all
private

Definition at line 135 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_vertexEtaVsPhi
private

Definition at line 158 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_vertexP
private

Definition at line 153 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_vertexPhi
private

Definition at line 160 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_vertexPt
private

Definition at line 154 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_vertexPt_all
private

Definition at line 136 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_vertexPtVsEta
private

Definition at line 155 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_vertexPtVsPhi
private

Definition at line 156 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_vertexTIP
private

Definition at line 164 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_vertexTIPVsEta
private

Definition at line 165 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_vertexTIPVsPhi
private

Definition at line 166 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::h_ele_vertexTIPVsPt
private

Definition at line 167 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_vertexX
private

Definition at line 161 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_vertexY
private

Definition at line 162 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_ele_vertexZ
private

Definition at line 163 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_matchingObjectAbsEta
private

Definition at line 119 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_matchingObjectEta
private

Definition at line 118 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_matchingObjectNum
private

Definition at line 116 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_matchingObjectP
private

Definition at line 120 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_matchingObjectPhi
private

Definition at line 122 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_matchingObjectPt
private

Definition at line 121 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::h_matchingObjectZ
private

Definition at line 123 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TFile* GsfElectronMCFakeAnalyzer::histfile_
private
TH1F* GsfElectronMCFakeAnalyzer::histNum_
private

Definition at line 169 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::histSclE1x5_
private

Definition at line 186 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::histSclE1x5_barrel_
private

Definition at line 187 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::histSclE1x5_endcaps_
private

Definition at line 188 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::histSclE2x5max_
private

Definition at line 189 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::histSclE2x5max_barrel_
private

Definition at line 190 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::histSclE2x5max_endcaps_
private

Definition at line 191 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::histSclE5x5_
private

Definition at line 192 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::histSclE5x5_barrel_
private

Definition at line 193 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::histSclE5x5_endcaps_
private

Definition at line 194 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::histSclEn_
private

Definition at line 171 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::histSclEoEmatchingObject_barrel
private

Definition at line 172 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::histSclEoEmatchingObject_endcaps
private

Definition at line 173 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::histSclEoEmatchingObjectGolden_barrel
private

Definition at line 381 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::histSclEoEmatchingObjectGolden_endcaps
private

Definition at line 382 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::histSclEoEmatchingObjectShowering_barrel
private

Definition at line 383 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::histSclEoEmatchingObjectShowering_endcaps
private

Definition at line 384 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::histSclEt_
private

Definition at line 174 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::histSclEta_
private

Definition at line 178 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::histSclEtaVsPhi_
private

Definition at line 177 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::histSclEtVsEta_
private

Definition at line 175 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH2F* GsfElectronMCFakeAnalyzer::histSclEtVsPhi_
private

Definition at line 176 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::histSclPhi_
private

Definition at line 179 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::histSclSigEtaEta_
private

Definition at line 180 of file GsfElectronMCFakeAnalyzer.h.

TH1F* GsfElectronMCFakeAnalyzer::histSclSigEtaEta_barrel_
private

Definition at line 181 of file GsfElectronMCFakeAnalyzer.h.

TH1F* GsfElectronMCFakeAnalyzer::histSclSigEtaEta_endcaps_
private

Definition at line 182 of file GsfElectronMCFakeAnalyzer.h.

TH1F* GsfElectronMCFakeAnalyzer::histSclSigIEtaIEta_
private

Definition at line 183 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::histSclSigIEtaIEta_barrel_
private

Definition at line 184 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

TH1F* GsfElectronMCFakeAnalyzer::histSclSigIEtaIEta_endcaps_
private

Definition at line 185 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and endJob().

double GsfElectronMCFakeAnalyzer::hoemax
private

Definition at line 112 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

double GsfElectronMCFakeAnalyzer::hoemin
private

Definition at line 111 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

double GsfElectronMCFakeAnalyzer::lhitsmax
private

Definition at line 80 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

edm::InputTag GsfElectronMCFakeAnalyzer::matchingObjectCollection_
private

Definition at line 47 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), beginJob(), and GsfElectronMCFakeAnalyzer().

double GsfElectronMCFakeAnalyzer::maxAbsEta_
private

Definition at line 61 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), and GsfElectronMCFakeAnalyzer().

double GsfElectronMCFakeAnalyzer::maxPt_
private

Definition at line 60 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), and GsfElectronMCFakeAnalyzer().

float GsfElectronMCFakeAnalyzer::mcEnergy[10]
private

Definition at line 56 of file GsfElectronMCFakeAnalyzer.h.

float GsfElectronMCFakeAnalyzer::mcEta[10]
private

Definition at line 56 of file GsfElectronMCFakeAnalyzer.h.

float GsfElectronMCFakeAnalyzer::mcPhi[10]
private

Definition at line 56 of file GsfElectronMCFakeAnalyzer.h.

float GsfElectronMCFakeAnalyzer::mcPt[10]
private

Definition at line 56 of file GsfElectronMCFakeAnalyzer.h.

float GsfElectronMCFakeAnalyzer::mcQ[10]
private

Definition at line 56 of file GsfElectronMCFakeAnalyzer.h.

double GsfElectronMCFakeAnalyzer::meemax
private

Definition at line 109 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

double GsfElectronMCFakeAnalyzer::meemin
private

Definition at line 108 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

int GsfElectronMCFakeAnalyzer::nbindeta
private

Definition at line 85 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

int GsfElectronMCFakeAnalyzer::nbindetamatch
private

Definition at line 88 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

int GsfElectronMCFakeAnalyzer::nbindetamatch2D
private

Definition at line 89 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

int GsfElectronMCFakeAnalyzer::nbindphi
private

Definition at line 96 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

int GsfElectronMCFakeAnalyzer::nbindphimatch
private

Definition at line 99 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

int GsfElectronMCFakeAnalyzer::nbindphimatch2D
private

Definition at line 100 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

int GsfElectronMCFakeAnalyzer::nbineop
private

Definition at line 103 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

int GsfElectronMCFakeAnalyzer::nbineop2D
private

Definition at line 104 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

int GsfElectronMCFakeAnalyzer::nbineta
private

Definition at line 81 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), endJob(), and GsfElectronMCFakeAnalyzer().

int GsfElectronMCFakeAnalyzer::nbineta2D
private

Definition at line 82 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

int GsfElectronMCFakeAnalyzer::nbinfhits
private

Definition at line 77 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

int GsfElectronMCFakeAnalyzer::nbinhoe
private

Definition at line 110 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

int GsfElectronMCFakeAnalyzer::nbinlhits
private

Definition at line 79 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

int GsfElectronMCFakeAnalyzer::nbinmee
private

Definition at line 107 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

int GsfElectronMCFakeAnalyzer::nbinp
private

Definition at line 70 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

int GsfElectronMCFakeAnalyzer::nbinp2D
private

Definition at line 71 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

int GsfElectronMCFakeAnalyzer::nbinphi
private

Definition at line 92 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

int GsfElectronMCFakeAnalyzer::nbinphi2D
private

Definition at line 93 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

int GsfElectronMCFakeAnalyzer::nbinpt
private

Definition at line 73 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

int GsfElectronMCFakeAnalyzer::nbinpt2D
private

Definition at line 74 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

int GsfElectronMCFakeAnalyzer::nbinpteff
private

Definition at line 75 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

int GsfElectronMCFakeAnalyzer::nbinxyz
private

Definition at line 69 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

std::string GsfElectronMCFakeAnalyzer::outputFile_
private

Definition at line 50 of file GsfElectronMCFakeAnalyzer.h.

Referenced by GsfElectronMCFakeAnalyzer().

edm::ESHandle<TrackerGeometry> GsfElectronMCFakeAnalyzer::pDD
private

Definition at line 53 of file GsfElectronMCFakeAnalyzer.h.

double GsfElectronMCFakeAnalyzer::phimax
private

Definition at line 95 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

double GsfElectronMCFakeAnalyzer::phimin
private

Definition at line 94 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

double GsfElectronMCFakeAnalyzer::pmax
private

Definition at line 72 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

double GsfElectronMCFakeAnalyzer::ptmax
private

Definition at line 76 of file GsfElectronMCFakeAnalyzer.h.

Referenced by beginJob(), and GsfElectronMCFakeAnalyzer().

bool GsfElectronMCFakeAnalyzer::readAOD_
private

Definition at line 49 of file GsfElectronMCFakeAnalyzer.h.

Referenced by analyze(), and GsfElectronMCFakeAnalyzer().

float GsfElectronMCFakeAnalyzer::seedEta[10]
private

Definition at line 58 of file GsfElectronMCFakeAnalyzer.h.

float GsfElectronMCFakeAnalyzer::seedMomentum[10]
private

Definition at line 58 of file GsfElectronMCFakeAnalyzer.h.

float GsfElectronMCFakeAnalyzer::seedPhi[10]
private

Definition at line 58 of file GsfElectronMCFakeAnalyzer.h.

float GsfElectronMCFakeAnalyzer::seedPt[10]
private

Definition at line 58 of file GsfElectronMCFakeAnalyzer.h.

float GsfElectronMCFakeAnalyzer::seedQ[10]
private

Definition at line 58 of file GsfElectronMCFakeAnalyzer.h.

float GsfElectronMCFakeAnalyzer::superclusterEnergy[10]
private

Definition at line 57 of file GsfElectronMCFakeAnalyzer.h.

float GsfElectronMCFakeAnalyzer::superclusterEt[10]
private

Definition at line 57 of file GsfElectronMCFakeAnalyzer.h.

float GsfElectronMCFakeAnalyzer::superclusterEta[10]
private

Definition at line 57 of file GsfElectronMCFakeAnalyzer.h.

float GsfElectronMCFakeAnalyzer::superclusterPhi[10]
private

Definition at line 57 of file GsfElectronMCFakeAnalyzer.h.

edm::ESHandle<MagneticField> GsfElectronMCFakeAnalyzer::theMagField
private

Definition at line 54 of file GsfElectronMCFakeAnalyzer.h.

TrajectoryStateTransform GsfElectronMCFakeAnalyzer::transformer_
private

Definition at line 52 of file GsfElectronMCFakeAnalyzer.h.

TTree* GsfElectronMCFakeAnalyzer::tree_
private

Definition at line 65 of file GsfElectronMCFakeAnalyzer.h.