tuple python.genMuonChannelModules_cff.bareGenEle |
tuple python.genMuonChannelModules_cff.bareGenEleFilter |
tuple python.genMuonChannelModules_cff.bareGenJet |
tuple python.genMuonChannelModules_cff.bareGenJetFilter |
tuple python.genMuonChannelModules_cff.bareGenParticleSeq = cms.Sequence(bareGenJet*bareGenJetFilter*bareGenEle*bareGenEleFilter) |
tuple python.genMuonChannelModules_cff.bareMatchedGenParticleSeq |
tuple python.genMuonChannelModules_cff.bareMatchedGenQuark |
tuple python.genMuonChannelModules_cff.bareMatchedGenQuarkFilter |
tuple python.genMuonChannelModules_cff.bareMatchedLeadingGenEle |
filters to select gen particles matched to WR decay products via pdgId heavyNu pdgId = 9900014, WR pdgId = 9900024
tuple python.genMuonChannelModules_cff.bareMatchedLeadingGenEleFilter |
tuple python.genMuonChannelModules_cff.bareMatchedSubleadingGenEle |
tuple python.genMuonChannelModules_cff.bareMatchedSubleadingGenEleFilter |
tuple python.genMuonChannelModules_cff.etaRestrictedMatchedGenLeadingLepton |
tuple python.genMuonChannelModules_cff.etaRestrictedMatchedGenLeadingLeptonFilter |
tuple python.genMuonChannelModules_cff.etaRestrictedMatchedGenParticleSeq |
tuple python.genMuonChannelModules_cff.etaRestrictedMatchedGenQuark |
filters to cut out gen particles which could never hit the tracker based on eta trajectory use these modules to determine efficiency of signal skim (skim applies pT cuts to leptons and possibly jets) skim efficiency on signal = # evts passing reco cuts / # evts before reco cuts with gen objects falling within tracker coverage
tuple python.genMuonChannelModules_cff.etaRestrictedMatchedGenQuarkFilter |
tuple python.genMuonChannelModules_cff.etaRestrictedMatchedGenSubleadingLepton |
tuple python.genMuonChannelModules_cff.etaRestrictedMatchedGenSubleadingLeptonFilter |
tuple python.genMuonChannelModules_cff.genDiElectronCandidate |
filters on dilepton mass, and the producer necessary to facilitate this filter
tuple python.genMuonChannelModules_cff.genDiElectronCandidateFilter |
tuple python.genMuonChannelModules_cff.genDiElectronCandidateSeq = cms.Sequence(genDiElectronCandidate*genDiElectronCandidateFilter) |
tuple python.genMuonChannelModules_cff.genMatchedDiElectronCandidate |
tuple python.genMuonChannelModules_cff.genMatchedDiElectronCandidateFilter |
tuple python.genMuonChannelModules_cff.genMatchedDiElectronCandidateSeq = cms.Sequence(genMatchedDiElectronCandidate*genMatchedDiElectronCandidateFilter) |
tuple python.genMuonChannelModules_cff.hasGenNuMuOrTau |
tuple python.genMuonChannelModules_cff.hasGenNuMuOrTauFilter |
tuple python.genMuonChannelModules_cff.matchedPtEtaConstrainedSeq |
tuple python.genMuonChannelModules_cff.matchGenJetsToGenQuarksNoCuts |
producers to find GenJets matched to Gen quarks
tuple python.genMuonChannelModules_cff.matchGenJetsToGenQuarksNoCutsFilter |
tuple python.genMuonChannelModules_cff.matchGenJetsToGenQuarksNoCutsNewPath |
tuple python.genMuonChannelModules_cff.matchGenJetsToGenQuarksNoCutsNewPathFilter |
tuple python.genMuonChannelModules_cff.printParticleTree |
tuple python.genMuonChannelModules_cff.ptEtaConstrainedSeq |
tuple python.genMuonChannelModules_cff.ptEtaRestrictedGenJet |
tuple python.genMuonChannelModules_cff.ptEtaRestrictedGenJetFilter |
tuple python.genMuonChannelModules_cff.ptEtaRestrictedLeadingGenEle |
tuple python.genMuonChannelModules_cff.ptEtaRestrictedLeadingGenEleFilter |
tuple python.genMuonChannelModules_cff.ptEtaRestrictedMatchedGenQuark |
tuple python.genMuonChannelModules_cff.ptEtaRestrictedMatchedGenQuarkFilter |
tuple python.genMuonChannelModules_cff.ptEtaRestrictedMatchedLeadingGenEle |
tuple python.genMuonChannelModules_cff.ptEtaRestrictedMatchedLeadingGenEleFilter |
tuple python.genMuonChannelModules_cff.ptEtaRestrictedMatchedSubleadingGenEle |
tuple python.genMuonChannelModules_cff.ptEtaRestrictedMatchedSubleadingGenEleFilter |
tuple python.genMuonChannelModules_cff.ptEtaRestrictedSubleadingGenEle |