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Variables
cutBasedElectronID_Summer20_PhaseII_V0_cff Namespace Reference

Variables

tuple cutBasedElectronID_Summer20_PhaseII_V0_loose = configureVIDCutBasedEleID_V5(WP_Loose_EB, WP_Loose_EE, isoEffAreas)
 
tuple cutBasedElectronID_Summer20_PhaseII_V0_medium = configureVIDCutBasedEleID_V5(WP_Medium_EB, WP_Medium_EE, isoEffAreas)
 
tuple cutBasedElectronID_Summer20_PhaseII_V0_tight = configureVIDCutBasedEleID_V5(WP_Tight_EB, WP_Tight_EE, isoEffAreas)
 
tuple cutBasedElectronID_Summer20_PhaseII_V0_veto = configureVIDCutBasedEleID_V5(WP_Veto_EB, WP_Veto_EE, isoEffAreas)
 
string idName = "cutBasedElectronID-Summer20-PhaseII-V0-veto"
 This ID is for Phase II and hence matters for EB. More...
 
string isoEffAreas = "RecoEgamma/ElectronIdentification/data/PhaseII/EffectiveArea_electrons_barrel_PhaseII.txt"
 
tuple WP_Loose_EB
 
tuple WP_Loose_EE
 
tuple WP_Medium_EB
 
tuple WP_Medium_EE
 
tuple WP_Tight_EB
 
tuple WP_Tight_EE
 
tuple WP_Veto_EB
 
tuple WP_Veto_EE
 

Variable Documentation

tuple cutBasedElectronID_Summer20_PhaseII_V0_cff.cutBasedElectronID_Summer20_PhaseII_V0_loose = configureVIDCutBasedEleID_V5(WP_Loose_EB, WP_Loose_EE, isoEffAreas)
tuple cutBasedElectronID_Summer20_PhaseII_V0_cff.cutBasedElectronID_Summer20_PhaseII_V0_medium = configureVIDCutBasedEleID_V5(WP_Medium_EB, WP_Medium_EE, isoEffAreas)
tuple cutBasedElectronID_Summer20_PhaseII_V0_cff.cutBasedElectronID_Summer20_PhaseII_V0_tight = configureVIDCutBasedEleID_V5(WP_Tight_EB, WP_Tight_EE, isoEffAreas)
tuple cutBasedElectronID_Summer20_PhaseII_V0_cff.cutBasedElectronID_Summer20_PhaseII_V0_veto = configureVIDCutBasedEleID_V5(WP_Veto_EB, WP_Veto_EE, isoEffAreas)
string cutBasedElectronID_Summer20_PhaseII_V0_cff.idName = "cutBasedElectronID-Summer20-PhaseII-V0-veto"

This ID is for Phase II and hence matters for EB.

The ID cuts below are optimized IDs on Summer20 Phase II simulation These are very initial tuning which will improve further as we improve our understanding on the variables for phase II (e.g noise cleaned sieie is not yet used here. PF cluster isolations may be better but not yet used). We just use the Run II variables on phase II samples for the tuning See also the presentation explaining these working points: https://indico.cern.ch/event/1000891/contributions/4203637/attachments/2183448/3688820/ElectronIDtunning_EgammaMeeting_03Feb2021.pdf https://indico.cern.ch/event/879937/contributions/4108369/attachments/2147436/3619904/EgammaID_phaseIIElectrontunning_pyu_2020Nov20.pdf

Definition at line 23 of file cutBasedElectronID_Summer20_PhaseII_V0_cff.py.

string cutBasedElectronID_Summer20_PhaseII_V0_cff.isoEffAreas = "RecoEgamma/ElectronIdentification/data/PhaseII/EffectiveArea_electrons_barrel_PhaseII.txt"
tuple cutBasedElectronID_Summer20_PhaseII_V0_cff.WP_Loose_EB
Initial value:
1 = EleWorkingPoint_V5(
2  idName = idName , # idName
3  full5x5_sigmaIEtaIEtaCut = 0.0162 , # full5x5_sigmaIEtaIEtaCut
4  dEtaInSeedCut = 0.00409 , # dEtaInSeedCut
5  dPhiInCut = 0.0679 , # dPhiInCut
6  hOverECut_C0 = 0.222 , # hOverECut
7  hOverECut_CE = 0. ,
8  hOverECut_Cr = 0. ,
9  relCombIsolationWithEACut_C0 = 0.223 , # relCombIsolationWithEACut
10  relCombIsolationWithEACut_Cpt = 0. ,
11  absEInverseMinusPInverseCut = 0.0747 , # absEInverseMinusPInverseCut
12  # conversion veto cut needs no parameters, so not mentioned
13  missingHitsCut = 1 # missingHitsCut
14  )

Definition at line 56 of file cutBasedElectronID_Summer20_PhaseII_V0_cff.py.

tuple cutBasedElectronID_Summer20_PhaseII_V0_cff.WP_Loose_EE
Initial value:
1 = EleWorkingPoint_V5(
2  idName = idName , # idName
3  full5x5_sigmaIEtaIEtaCut = 0.0162 , # full5x5_sigmaIEtaIEtaCut
4  dEtaInSeedCut = 0.00409 , # dEtaInSeedCut
5  dPhiInCut = 0.0679 , # dPhiInCut
6  hOverECut_C0 = 0.222 , # hOverECut
7  hOverECut_CE = 0. ,
8  hOverECut_Cr = 0. ,
9  relCombIsolationWithEACut_C0 = 0.223 , # relCombIsolationWithEACut
10  relCombIsolationWithEACut_Cpt = 0. ,
11  absEInverseMinusPInverseCut = 0.0747 , # absEInverseMinusPInverseCut
12  # conversion veto cut needs no parameters, so not mentioned
13  missingHitsCut = 1 # missingHitsCut
14  )

Definition at line 71 of file cutBasedElectronID_Summer20_PhaseII_V0_cff.py.

tuple cutBasedElectronID_Summer20_PhaseII_V0_cff.WP_Medium_EB
Initial value:
1 = EleWorkingPoint_V5(
2  idName = idName , # idName
3  full5x5_sigmaIEtaIEtaCut = 0.0156 , # full5x5_sigmaIEtaIEtaCut
4  dEtaInSeedCut = 0.00326 , # dEtaInSeedCut
5  dPhiInCut = 0.0434 , # dPhiInCut
6  hOverECut_C0 = 0.138 , # hOverECut
7  hOverECut_CE = 0. ,
8  hOverECut_Cr = 0. ,
9  relCombIsolationWithEACut_C0 = 0.159 , # relCombIsolationWithEACut
10  relCombIsolationWithEACut_Cpt = 0. ,
11  absEInverseMinusPInverseCut = 0.0735 , # absEInverseMinusPInverseCut
12  # conversion veto cut needs no parameters, so not mentioned
13  missingHitsCut = 1 # missingHitsCut
14  )

Definition at line 88 of file cutBasedElectronID_Summer20_PhaseII_V0_cff.py.

tuple cutBasedElectronID_Summer20_PhaseII_V0_cff.WP_Medium_EE
Initial value:
1 = EleWorkingPoint_V5(
2  idName = idName , # idName
3  full5x5_sigmaIEtaIEtaCut = 0.0156 , # full5x5_sigmaIEtaIEtaCut
4  dEtaInSeedCut = 0.00326 , # dEtaInSeedCut
5  dPhiInCut = 0.0434 , # dPhiInCut
6  hOverECut_C0 = 0.138 , # hOverECut
7  hOverECut_CE = 0. ,
8  hOverECut_Cr = 0. ,
9  relCombIsolationWithEACut_C0 = 0.159 , # relCombIsolationWithEACut
10  relCombIsolationWithEACut_Cpt = 0. ,
11  absEInverseMinusPInverseCut = 0.0735 , # absEInverseMinusPInverseCut
12  # conversion veto cut needs no parameters, so not mentioned
13  missingHitsCut = 1 # missingHitsCut
14  )

Definition at line 103 of file cutBasedElectronID_Summer20_PhaseII_V0_cff.py.

tuple cutBasedElectronID_Summer20_PhaseII_V0_cff.WP_Tight_EB
Initial value:
1 = EleWorkingPoint_V5(
2  idName = idName , # idName
3  full5x5_sigmaIEtaIEtaCut = 0.0137 , # full5x5_sigmaIEtaIEtaCut
4  dEtaInSeedCut = 0.00325 , # dEtaInSeedCut
5  dPhiInCut = 0.0365 , # dPhiInCut
6  hOverECut_C0 = 0.103 , # hOverECut
7  hOverECut_CE = 0. ,
8  hOverECut_Cr = 0. ,
9  relCombIsolationWithEACut_C0 = 0.121 , # relCombIsolationWithEACut
10  relCombIsolationWithEACut_Cpt = 0. ,
11  absEInverseMinusPInverseCut = 0.0161 , # absEInverseMinusPInverseCut
12  # conversion veto cut needs no parameters, so not mentioned
13  missingHitsCut = 1 # missingHitsCut
14  )

Definition at line 121 of file cutBasedElectronID_Summer20_PhaseII_V0_cff.py.

tuple cutBasedElectronID_Summer20_PhaseII_V0_cff.WP_Tight_EE
Initial value:
1 = EleWorkingPoint_V5(
2  idName = idName , # idName
3  full5x5_sigmaIEtaIEtaCut = 0.0137 , # full5x5_sigmaIEtaIEtaCut
4  dEtaInSeedCut = 0.00325 , # dEtaInSeedCut
5  dPhiInCut = 0.0365 , # dPhiInCut
6  hOverECut_C0 = 0.103 , # hOverECut
7  hOverECut_CE = 0. ,
8  hOverECut_Cr = 0. ,
9  relCombIsolationWithEACut_C0 = 0.121 , # relCombIsolationWithEACut
10  relCombIsolationWithEACut_Cpt = 0. ,
11  absEInverseMinusPInverseCut = 0.0161 , # absEInverseMinusPInverseCut
12  # conversion veto cut needs no parameters, so not mentioned
13  missingHitsCut = 1 # missingHitsCut
14  )

Definition at line 136 of file cutBasedElectronID_Summer20_PhaseII_V0_cff.py.

tuple cutBasedElectronID_Summer20_PhaseII_V0_cff.WP_Veto_EB
Initial value:
1 = EleWorkingPoint_V5(
2  idName = idName , # idName
3  full5x5_sigmaIEtaIEtaCut = 0.0181 , # full5x5_sigmaIEtaIEtaCut
4  dEtaInSeedCut = 0.00548, # dEtaInSeedCut
5  dPhiInCut = 0.197, # dPhiInCut
6  hOverECut_C0 = 0.313 , # hOverECut
7  hOverECut_CE = 0. ,
8  hOverECut_Cr = 0. ,
9  relCombIsolationWithEACut_C0 = 0.284 , # relCombIsolationWithEACut
10  relCombIsolationWithEACut_Cpt = 0. ,
11  absEInverseMinusPInverseCut = 0.203 , # absEInverseMinusPInverseCut
12  # conversion veto cut needs no parameters, so not mentioned
13  missingHitsCut = 2 # missingHitsCut
14  )

Definition at line 24 of file cutBasedElectronID_Summer20_PhaseII_V0_cff.py.

tuple cutBasedElectronID_Summer20_PhaseII_V0_cff.WP_Veto_EE
Initial value:
1 = EleWorkingPoint_V5(
2  idName = idName , # idName
3  full5x5_sigmaIEtaIEtaCut = 0.0181 , # full5x5_sigmaIEtaIEtaCut
4  dEtaInSeedCut = 0.00548, # dEtaInSeedCut
5  dPhiInCut = 0.197, # dPhiInCut
6  hOverECut_C0 = 0.313 , # hOverECut
7  hOverECut_CE = 0. ,
8  hOverECut_Cr = 0. ,
9  relCombIsolationWithEACut_C0 = 0.284 , # relCombIsolationWithEACut
10  relCombIsolationWithEACut_Cpt = 0. ,
11  absEInverseMinusPInverseCut = 0.203 , # absEInverseMinusPInverseCut
12  # conversion veto cut needs no parameters, so not mentioned
13  missingHitsCut = 2 # missingHitsCut
14  )

Definition at line 39 of file cutBasedElectronID_Summer20_PhaseII_V0_cff.py.