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/data/doxygen/doxygen-1.7.3/gen/CMSSW_4_2_8/src/RecoMuon/L3MuonIsolationProducer/python/L3MuonIsolationProducer_cfi.py

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00001 import FWCore.ParameterSet.Config as cms
00002 
00003 L3MuonIsolations = cms.EDProducer("L3MuonIsolationProducer",
00004     inputMuonCollection = cms.InputTag("L3Muons"),
00005     CutsPSet = cms.PSet(
00006         ConeSizes = cms.vdouble(0.24),
00007         ComponentName = cms.string('SimpleCuts'),
00008         Thresholds = cms.vdouble(2.0),
00009         maxNTracks = cms.int32(-1),
00010         EtaBounds = cms.vdouble(999.9),
00011         applyCutsORmaxNTracks = cms.bool(False)
00012     ),
00013     #make it tighter if desired (if(tk.pt>Pt_Min) sumPt += tk.pt;)
00014     #applied after MuIsoDeposits are extracted
00015     TrackPt_Min = cms.double(-1.0),
00016     # Uncomment to set the cut based on nominal efficiency
00017     # lookup table
00018     #      PSet CutsPSet = {
00019     #        string ComponentName = "L3NominalEfficiencyCuts_PXLS"
00020     #        string LumiOption = "2E33"
00021     #        double NominalEfficiency = 0.97
00022     #      }
00023     OutputMuIsoDeposits = cms.bool(False),
00024     ExtractorPSet = cms.PSet(
00025         Diff_z = cms.double(0.2),
00026         inputTrackCollection = cms.InputTag("pixelTracks"),
00027         BeamSpotLabel = cms.InputTag("offlineBeamSpot"),
00028         ComponentName = cms.string('TrackExtractor'),
00029         DR_Max = cms.double(1.0),
00030         Diff_r = cms.double(0.1),
00031         Chi2Prob_Min = cms.double(-1.0),
00032         DR_Veto = cms.double(0.01),
00033         NHits_Min = cms.uint32(0),
00034         Chi2Ndof_Max = cms.double(1e+64),
00035         Pt_Min = cms.double(-1.0),
00036         DepositLabel = cms.untracked.string('PXLS'),
00037         BeamlineOption = cms.string('BeamSpotFromEvent')
00038     )
00039 )
00040 
00041 
00042