Variables | |
tuple | generator |
00001 cms.EDFilter("PyquenGeneratorFilter", 00002 doQuench = cms.bool(True), 00003 doIsospin = cms.bool(True), 00004 qgpInitialTemperature = cms.double(1.0), ## initial temperature of QGP; allowed range [0.2,2.0]GeV; 00005 pythiaPylistVerbosity = cms.untracked.int32(0), 00006 doRadiativeEnLoss = cms.bool(True), ## if true, perform partonic radiative en loss 00007 bFixed = cms.double(0.0), ## fixed impact param (fm); valid only if cflag_=0 00008 angularSpectrumSelector = cms.int32(0), ## angular emitted gluon spectrum : 00009 pythiaHepMCVerbosity = cms.untracked.bool(False), 00010 PythiaParameters = cms.PSet(pyquenPythiaDefaultBlock, 00011 parameterSets = cms.vstring('pythiaUESettings','ppJets','pythiaPromptPhotons','kinematics'), 00012 kinematics = cms.vstring('CKIN(3) = 50','CKIN(4) = 80') 00013 ), 00014 qgpProperTimeFormation = cms.double(0.1), ## proper time of QGP formation; allowed range [0.01,10.0]fm/c; 00015 # Center of mass energy 00016 comEnergy = cms.double(2800.0), 00017 00018 qgpNumQuarkFlavor = cms.int32(0), ## number of active quark flavors in qgp; allowed values: 0,1,2,3 00019 cFlag = cms.int32(0), ## centrality flag 00020 bMin = cms.double(0.0), ## min impact param (fm); valid only if cflag_!=0 00021 bMax = cms.double(0.0), ## max impact param (fm); valid only if cflag_!=0 00022 maxEventsToPrint = cms.untracked.int32(0), ## events to print if pythiaPylistVerbosit 00023 aBeamTarget = cms.double(208.0), ## beam/target atomic number 00024 doCollisionalEnLoss = cms.bool(False), ## if true, perform partonic collisional en loss 00025 embeddingMode = cms.bool(False) 00026 00027 )
Definition at line 7 of file pyquenDefault_cfi.py.