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Spring 2024 config files
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[gaudiapp] | ||
InputFileFlag = --inputFiles | ||
OutputFileFlag = --PodioOutput.filename | ||
ExecutableName = k4run | ||
SteeringFile = CLDReconstruction.py | ||
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[ddsim] | ||
SteeringFile = cld_steer.py | ||
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[Production Parameters] | ||
prodGroup = several | ||
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prodIDs = 800001,800002,800003 | ||
machine = ee | ||
softwareVersion = key4hep_240310 | ||
simulationApplication = ddsim | ||
reconstructionApplication = gaudiapp | ||
processes = Z_uds,Z_uds,Z_uds | ||
energies = 91,100,200 | ||
eventsPerJobs = 25,25,25 | ||
additionalName = splitstuff1 | ||
configVersion = key4hep-devel-2 | ||
configPackage = fccConfig | ||
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numberOfTasks = 1 | ||
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campaign = spring2024 | ||
detectorModel = CLD_o2_v05 | ||
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productionLogLevel = VERBOSE | ||
outputSE = CERN-DST-EOS | ||
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finalOutputSE = CERN-SRM | ||
MoveStatus = Stopped | ||
MoveGroupSize = 10 | ||
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ProdTypes = Sim,Rec |
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[whizard2] | ||
Version = 2.8.3 | ||
#EvtType = ZHH | ||
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[ddsim] | ||
SteeringFile = cld_steer.py | ||
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[gaudiapp] | ||
ExecutableName = k4run | ||
SteeringFile = CLDReconstruction.py | ||
InputFileFlag = --inputFiles | ||
OutputFileFlag = --PodioOutput.filename | ||
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[Production Parameters] | ||
machine = ee | ||
prodGroup = several | ||
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softwareVersion = key4hep_240310 | ||
generatorApplication = whizard2 | ||
simulationApplication = ddsim | ||
reconstructionApplication = gaudiapp | ||
generatorSteeringFile = wzp6_ee_eeH_ecm240.sin, wzp6_ee_mumuH_ecm240.sin | ||
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configVersion = key4hep-devel-2 | ||
configPackage = fccConfig | ||
eventsPerJobs = 1000, 1000 | ||
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numberOfTasks = 1, 1 | ||
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campaign = test_spring2024 | ||
energies = 240, 240 | ||
processes = eeH, mumuH | ||
detectorModel = CLD_o2_v05 | ||
additionalName = JanTry | ||
productionLogLevel = VERBOSE | ||
outputSE = CERN-DST-EOS | ||
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finalOutputSE = CERN-SRM | ||
MoveStatus = Stopped | ||
MoveGroupSize = 10 | ||
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ProdTypes = Gen, Sim, Rec | ||
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######################################################################## | ||
# | ||
# Whizard 3.0.3 | ||
# | ||
# e e -> mu mu H (only one diagram, e e -> Z H and Z -> mumu ) | ||
# | ||
# Hadronisation by Pythia6. Inclusive H decays (by Pythia) | ||
# | ||
######################################################################## | ||
# | ||
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model = SM | ||
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mH = 125 GeV | ||
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# Center of mass energy | ||
sqrts = 240 GeV | ||
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# Processes | ||
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#?vis_diags = true | ||
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process proc = e1, E1 => H, e1, E1 | ||
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beams = e1, E1 => gaussian => isr | ||
?keep_beams = true # do not use this option, makes Pythia crash | ||
?keep_remnants = true | ||
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gaussian_spread1 = 0.185% | ||
gaussian_spread2 = 0.185% | ||
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?isr_handler = true | ||
$isr_handler_mode = "recoil" | ||
isr_alpha = 0.0072993 | ||
isr_mass = 0.000511 | ||
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! Parton shower and hadronization | ||
?ps_fsr_active = true | ||
?ps_isr_active = false | ||
?hadronization_active = true | ||
$shower_method = "PYTHIA6" | ||
!?ps_PYTHIA_verbose = true | ||
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$ps_PYTHIA_PYGIVE = "MSTJ(28)=0; PMAS(25,1)=125.1; PMAS(25,2)=0.4143E-02; MSTJ(41)=2; MSTU(22)=2000; PARJ(21)=0.40000; PARJ(41)=0.11000; PARJ(42)=0.52000; PARJ(81)=0.25000; PARJ(82)=1.90000; MSTJ(11)=3; PARJ(54)=-0.03100; PARJ(55)=-0.00200; PARJ(1)=0.08500; PARJ(3)=0.45000; PARJ(4)=0.02500; PARJ(2)=0.31000; PARJ(11)=0.60000; PARJ(12)=0.40000; PARJ(13)=0.72000; PARJ(14)=0.43000; PARJ(15)=0.08000; PARJ(16)=0.08000; PARJ(17)=0.17000; MSTP(3)=1;MSTP(71)=1; MSTP(151)=1; PARP(151)=0.0098; PARP(152)=2.54e-5; PARP(153)=0.646; PARP(154)=1.937; MSTJ(22)=4; PARJ(73)=2250; PARJ(74)=2500" | ||
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integrate (proc) { iterations = 10:100000:"gw", 5:200000:"" } | ||
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# n_events should be passed by the EventProducer | ||
# n_events = 100000 | ||
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sample_format = stdhep | ||
$extension_stdhep = "stdhep" | ||
simulate (proc) {checkpoint = 100} | ||
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######################################################################## | ||
# | ||
# Whizard 3.0.3 | ||
# | ||
# e e -> mu mu H (only one diagram, e e -> Z H and Z -> mumu ) | ||
# | ||
# Hadronisation by Pythia6. Inclusive H decays (by Pythia) | ||
# | ||
######################################################################## | ||
# | ||
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model = SM | ||
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mH = 125 GeV | ||
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# Center of mass energy | ||
sqrts = 240 GeV | ||
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# Processes | ||
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#?vis_diags = true | ||
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process proc = e1, E1 => H, e2, E2 | ||
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beams = e1, E1 => gaussian => isr | ||
?keep_beams = true # do not use this option, makes Pythia crash | ||
?keep_remnants = true | ||
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gaussian_spread1 = 0.185% | ||
gaussian_spread2 = 0.185% | ||
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?isr_handler = true | ||
$isr_handler_mode = "recoil" | ||
isr_alpha = 0.0072993 | ||
isr_mass = 0.000511 | ||
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! Parton shower and hadronization | ||
?ps_fsr_active = true | ||
?ps_isr_active = false | ||
?hadronization_active = true | ||
$shower_method = "PYTHIA6" | ||
!?ps_PYTHIA_verbose = true | ||
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$ps_PYTHIA_PYGIVE = "MSTJ(28)=0; PMAS(25,1)=125.1; PMAS(25,2)=0.4143E-02; MSTJ(41)=2; MSTU(22)=2000; PARJ(21)=0.40000; PARJ(41)=0.11000; PARJ(42)=0.52000; PARJ(81)=0.25000; PARJ(82)=1.90000; MSTJ(11)=3; PARJ(54)=-0.03100; PARJ(55)=-0.00200; PARJ(1)=0.08500; PARJ(3)=0.45000; PARJ(4)=0.02500; PARJ(2)=0.31000; PARJ(11)=0.60000; PARJ(12)=0.40000; PARJ(13)=0.72000; PARJ(14)=0.43000; PARJ(15)=0.08000; PARJ(16)=0.08000; PARJ(17)=0.17000; MSTP(3)=1;MSTP(71)=1; MSTP(151)=1; PARP(151)=0.0098; PARP(152)=2.54e-5; PARP(153)=0.646; PARP(154)=1.937; MSTJ(22)=4; PARJ(73)=2250; PARJ(74)=2500" | ||
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integrate (proc) { iterations = 10:100000:"gw", 5:200000:"" } | ||
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# n_events should be passed by the EventProducer | ||
# n_events = 100000 | ||
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sample_format = stdhep | ||
$extension_stdhep = "stdhep" | ||
simulate (proc) {checkpoint = 100} | ||
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