k4SimGeant4
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samplingFraction_inclinedEcal Namespace Reference

Variables

 podioevent = FCCDataSvc("EventDataSvc")
 
 geoservice
 
 geantservice = SimG4Svc("SimG4Svc", detector='SimG4DD4hepDetector', physicslist="SimG4FtfpBert", actions="SimG4FullSimActions")
 
 saveecaltool = SimG4SaveCalHits("saveECalBarrelHits",readoutNames = ["ECalBarrelEta"])
 
 Path
 
 pgun
 
 geantsim
 
 hist
 
 Output
 
 PrintAll
 
 AutoSave
 
 AutoFlush
 
 OutputLevel
 
 chra = ChronoAuditor()
 
 audsvc = AuditorSvc()
 
 Auditors
 
 AuditExecute
 
 TopAlg
 
 EvtSel
 
 EvtMax
 
 ExtSvc
 

Variable Documentation

◆ AuditExecute

samplingFraction_inclinedEcal.AuditExecute

◆ Auditors

samplingFraction_inclinedEcal.Auditors

◆ audsvc

samplingFraction_inclinedEcal.audsvc = AuditorSvc()

◆ AutoFlush

samplingFraction_inclinedEcal.AutoFlush

◆ AutoSave

samplingFraction_inclinedEcal.AutoSave

◆ chra

samplingFraction_inclinedEcal.chra = ChronoAuditor()

◆ EvtMax

samplingFraction_inclinedEcal.EvtMax

◆ EvtSel

samplingFraction_inclinedEcal.EvtSel

◆ ExtSvc

samplingFraction_inclinedEcal.ExtSvc

◆ geantservice

samplingFraction_inclinedEcal.geantservice = SimG4Svc("SimG4Svc", detector='SimG4DD4hepDetector', physicslist="SimG4FtfpBert", actions="SimG4FullSimActions")

◆ geantsim

samplingFraction_inclinedEcal.geantsim
Initial value:
1= SimG4Alg("SimG4Alg",
2 outputs= ["SimG4SaveCalHits/saveECalBarrelHits"],
3 eventProvider = pgun,
4 OutputLevel = DEBUG)
Geant simulation algorithm.
Definition SimG4Alg.h:31

◆ geoservice

samplingFraction_inclinedEcal.geoservice
Initial value:
1= GeoSvc("GeoSvc", detectors=[ 'file:Detector/DetFCChhBaseline1/compact/FCChh_DectEmptyMaster.xml',
2 'file:Detector/DetFCChhECalInclined/compact/FCChh_ECalBarrel_calibration.xml'
3],
4 OutputLevel = INFO)
Definition GeoSvc.h:22

◆ hist

samplingFraction_inclinedEcal.hist
Initial value:
2 energyAxis = 50,
3 readoutName = "ECalBarrelEta",
4 layerFieldName = "layer",
5 activeFieldName = "type",
6 activeFieldValue = 0,
7 numLayers = 8,
8 OutputLevel = INFO)
Histograms of energy deposited in active material and total energy deposited in the calorimeter.
Definition SamplingFractionInLayers.h:29

◆ Output

samplingFraction_inclinedEcal.Output

◆ OutputLevel

samplingFraction_inclinedEcal.OutputLevel

◆ Path

samplingFraction_inclinedEcal.Path

◆ pgun

samplingFraction_inclinedEcal.pgun
Initial value:
1= SimG4SingleParticleGeneratorTool("SimG4SingleParticleGeneratorTool",saveEdm=True,
2 particleName = "e-", energyMin = 50000, energyMax = 50000, etaMin = 0, etaMax = 0,
3 OutputLevel = DEBUG)
Tool that generates single particles with parameters set via options file.
Definition SimG4SingleParticleGeneratorTool.h:32

◆ podioevent

samplingFraction_inclinedEcal.podioevent = FCCDataSvc("EventDataSvc")

◆ PrintAll

samplingFraction_inclinedEcal.PrintAll

◆ saveecaltool

samplingFraction_inclinedEcal.saveecaltool = SimG4SaveCalHits("saveECalBarrelHits",readoutNames = ["ECalBarrelEta"])

◆ TopAlg

samplingFraction_inclinedEcal.TopAlg