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pyquenEcalTrig_cfi.py
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1 # cfi for Ecal Triggered sample with pt > 100
2 
3 import FWCore.ParameterSet.Config as cms
4 
7 
8 generator = cms.EDFilter("PyquenGeneratorFilter",
9  ecalTrigPt100,
10  doQuench = cms.bool(True),
11  doIsospin = cms.bool(True),
12  qgpInitialTemperature = cms.double(1.0), ## initial temperature of QGP; allowed range [0.2,2.0]GeV;
13  pythiaPylistVerbosity = cms.untracked.int32(0),
14  doRadiativeEnLoss = cms.bool(True), ## if true, perform partonic radiative en loss
15  bFixed = cms.double(0.0), ## fixed impact param (fm); valid only if cflag_=0
16  angularSpectrumSelector = cms.int32(0), ## angular emitted gluon spectrum :
17  pythiaHepMCVerbosity = cms.untracked.bool(False),
18  PythiaParameters = cms.PSet(pyquenPythiaDefaultBlock,
19  parameterSets = cms.vstring('pythiaUESettings','ppJets','pythiaPromptPhotons','kinematics'),
20  kinematics = cms.vstring('CKIN(3) = 50','CKIN(4) = 80')
21  ),
22  qgpProperTimeFormation = cms.double(0.1), ## proper time of QGP formation; allowed range [0.01,10.0]fm/c;
23  qgpNumQuarkFlavor = cms.int32(0), ## number of active quark flavors in qgp; allowed values: 0,1,2,3
24  # Center of mass energy
25  comEnergy = cms.double(4000.0),
26  cFlag = cms.int32(0), ## centrality flag
27  bMin = cms.double(0.0), ## min impact param (fm); valid only if cflag_!=0
28  bMax = cms.double(0.0), ## max impact param (fm); valid only if cflag_!=0
29  maxEventsToPrint = cms.untracked.int32(0), ## events to print if pythiaPylistVerbosit
30  aBeamTarget = cms.double(208.0), ## beam/target atomic number
31  doCollisionalEnLoss = cms.bool(True), ## if true, perform partonic collisional en loss
32  embeddingMode = cms.bool(False),
33  backgroundLabel = cms.InputTag("generator","unsmeared")
34  )
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