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geant4/examples/extended/biasing/B03/exampleB03.out
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2024-02-16 14:58:45 +01:00

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Environment variable "G4FORCE_RUN_MANAGER_TYPE" enabled with value == Serial. Forcing G4RunManager type...
############################################
!!! WARNING - FPE detection is activated !!!
############################################
################################
!!! G4Backtrace is activated !!!
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**************************************************************
Geant4 version Name: geant4-11-02-patch-01 (16-February-2024)
Copyright : Geant4 Collaboration
References : NIM A 506 (2003), 250-303
: IEEE-TNS 53 (2006), 270-278
: NIM A 835 (2016), 186-225
WWW : http://geant4.org/
**************************************************************
constructing parallel world
B03ImportanceDetectorConstruction:: ghostWorldName = ParallelBiasingWorld
--- G4CoupledTransportation is used
Preparing Importance Sampling with GhostWorld ParallelBiasingWorld
G4IStore:: Creating new Parallel IStore ParallelBiasingWorld
G4IStore:: ParallelWorldName = ParallelBiasingWorld
G4IStore:: fParallelWorldVolume = ParallelBiasingWorld
G4GeometrySampler:: preparing importance sampling WorldName is ParallelBiasingWorld
G4ImportanceConfigurator:: setting world name: ParallelBiasingWorld
G4ImportanceConfigurator:: entering importance configure, paraflag 1
### G4ImportanceProcess:: Creating
G4ImportanceProcess:: importance process paraflag is: 1
G4ImportanceProcess:: SetParallelWorld name = ParallelBiasingWorld
=== G4ProcessPlacer::AddProcessAsSecondDoIt: for: neutron
Modifying Process Order for ProcessName: ImportanceProcess
The initial AlongStep Vectors:
GPIL Vector:
ParaWorldProc_ParallelBiasingWorld
CoupledTransportation
DoIt Vector:
CoupledTransportation
ParaWorldProc_ParallelBiasingWorld
The initial PostStep Vectors:
GPIL Vector:
ParaWorldProc_ParallelBiasingWorld
CoupledTransportation
DoIt Vector:
CoupledTransportation
ParaWorldProc_ParallelBiasingWorld
The final AlongStep Vectors:
GPIL Vector:
ImportanceProcess
ParaWorldProc_ParallelBiasingWorld
CoupledTransportation
DoIt Vector:
CoupledTransportation
ParaWorldProc_ParallelBiasingWorld
ImportanceProcess
The final PostStep Vectors:
GPIL Vector:
ParaWorldProc_ParallelBiasingWorld
ImportanceProcess
CoupledTransportation
DoIt Vector:
CoupledTransportation
ImportanceProcess
ParaWorldProc_ParallelBiasingWorld
================================================
GeomSampler Configured!!!
Running in singlethreaded mode!!!
B03PhysicsList::SetCuts:CutLength : 1 (mm)
ghost world: ParallelBiasingWorld
adding cell: 1 replica: 0 name: cell_01
adding cell: 2 replica: 0 name: cell_02
adding cell: 3 replica: 0 name: cell_03
adding cell: 4 replica: 0 name: cell_04
adding cell: 5 replica: 0 name: cell_05
adding cell: 6 replica: 0 name: cell_06
adding cell: 7 replica: 0 name: cell_07
adding cell: 8 replica: 0 name: cell_08
adding cell: 9 replica: 0 name: cell_09
adding cell: 10 replica: 0 name: cell_10
adding cell: 11 replica: 0 name: cell_11
adding cell: 12 replica: 0 name: cell_12
adding cell: 13 replica: 0 name: cell_13
adding cell: 14 replica: 0 name: cell_14
adding cell: 15 replica: 0 name: cell_15
adding cell: 16 replica: 0 name: cell_16
adding cell: 17 replica: 0 name: cell_17
adding cell: 18 replica: 0 name: cell_18
=======================================================================
====== Electromagnetic Physics Parameters ========
=======================================================================
LPM effect enabled 1
Enable creation and use of sampling tables 0
Apply cuts on all EM processes 0
Use combined TransportationWithMsc Disabled
Use general process 0
Enable linear polarisation for gamma 0
Enable photoeffect sampling below K-shell 1
Enable sampling of quantum entanglement 0
X-section factor for integral approach 0.8
Min kinetic energy for tables 100 eV
Max kinetic energy for tables 100 TeV
Number of bins per decade of a table 7
Verbose level 1
Verbose level for worker thread 0
Bremsstrahlung energy threshold above which
primary e+- is added to the list of secondary 100 TeV
Bremsstrahlung energy threshold above which primary
muon/hadron is added to the list of secondary 100 TeV
Lowest triplet kinetic energy 1 MeV
Enable sampling of gamma linear polarisation 0
5D gamma conversion model type 0
5D gamma conversion model on isolated ion 0
Livermore data directory epics_2017
=======================================================================
====== Ionisation Parameters ========
=======================================================================
Step function for e+- (0.2, 1 mm)
Step function for muons/hadrons (0.2, 0.1 mm)
Step function for light ions (0.2, 0.1 mm)
Step function for general ions (0.2, 0.1 mm)
Lowest e+e- kinetic energy 1 keV
Lowest muon/hadron kinetic energy 1 keV
Use ICRU90 data 0
Fluctuations of dE/dx are enabled 1
Type of fluctuation model for leptons and hadrons Universal
Use built-in Birks satuaration 0
Build CSDA range enabled 0
Use cut as a final range enabled 0
Enable angular generator interface 0
Max kinetic energy for CSDA tables 1 GeV
Max kinetic energy for NIEL computation 0 eV
Linear loss limit 0.01
Read data from file for e+e- pair production by mu 0
=======================================================================
====== Multiple Scattering Parameters ========
=======================================================================
Type of msc step limit algorithm for e+- 1
Type of msc step limit algorithm for muons/hadrons 0
Msc lateral displacement for e+- enabled 1
Msc lateral displacement for muons and hadrons 0
Urban msc model lateral displacement alg96 1
Range factor for msc step limit for e+- 0.04
Range factor for msc step limit for muons/hadrons 0.2
Geometry factor for msc step limitation of e+- 2.5
Safety factor for msc step limit for e+- 0.6
Skin parameter for msc step limitation of e+- 1
Lambda limit for msc step limit for e+- 1 mm
Use Mott correction for e- scattering 0
Factor used for dynamic computation of angular
limit between single and multiple scattering 1
Fixed angular limit between single
and multiple scattering 3.1416 rad
Upper energy limit for e+- multiple scattering 100 MeV
Type of electron single scattering model 0
Type of nuclear form-factor 1
Screening factor 1
=======================================================================
conv: for gamma SubType=14 BuildTable=1
Lambda table from 1.022 MeV to 100 TeV, 18 bins/decade, spline: 1
===== EM models for the G4Region DefaultRegionForTheWorld ======
BetheHeitlerLPM : Emin= 0 eV Emax= 100 TeV ModifiedTsai
compt: for gamma SubType=13 BuildTable=1
Lambda table from 100 eV to 1 MeV, 7 bins/decade, spline: 1
LambdaPrime table from 1 MeV to 100 TeV in 56 bins
===== EM models for the G4Region DefaultRegionForTheWorld ======
Klein-Nishina : Emin= 0 eV Emax= 100 TeV
phot: for gamma SubType=12 BuildTable=0
LambdaPrime table from 200 keV to 100 TeV in 61 bins
===== EM models for the G4Region DefaultRegionForTheWorld ======
PhotoElectric : Emin= 0 eV Emax= 100 TeV SauterGavrila
msc: for e- SubType= 10
===== EM models for the G4Region DefaultRegionForTheWorld ======
UrbanMsc : Emin= 0 eV Emax= 100 TeV Nbins=84 100 eV - 100 TeV
StepLim=UseSafety Rfact=0.04 Gfact=2.5 Sfact=0.6 DispFlag:1 Skin=1 Llim=1 mm
eIoni: for e- XStype:3 SubType=2
dE/dx and range tables from 100 eV to 100 TeV in 84 bins
Lambda tables from threshold to 100 TeV, 7 bins/decade, spline: 1
StepFunction=(0.2, 1 mm), integ: 3, fluct: 1, linLossLim= 0.01
===== EM models for the G4Region DefaultRegionForTheWorld ======
MollerBhabha : Emin= 0 eV Emax= 100 TeV
eBrem: for e- XStype:4 SubType=3
dE/dx and range tables from 100 eV to 100 TeV in 84 bins
Lambda tables from threshold to 100 TeV, 7 bins/decade, spline: 1
LPM flag: 1 for E > 1 GeV, VertexHighEnergyTh(GeV)= 100000
===== EM models for the G4Region DefaultRegionForTheWorld ======
eBremSB : Emin= 0 eV Emax= 1 GeV ModifiedTsai
eBremLPM : Emin= 1 GeV Emax= 100 TeV ModifiedTsai
msc: for e+ SubType= 10
===== EM models for the G4Region DefaultRegionForTheWorld ======
UrbanMsc : Emin= 0 eV Emax= 100 TeV Nbins=84 100 eV - 100 TeV
StepLim=UseSafety Rfact=0.04 Gfact=2.5 Sfact=0.6 DispFlag:1 Skin=1 Llim=1 mm
eIoni: for e+ XStype:3 SubType=2
dE/dx and range tables from 100 eV to 100 TeV in 84 bins
Lambda tables from threshold to 100 TeV, 7 bins/decade, spline: 1
StepFunction=(0.2, 1 mm), integ: 3, fluct: 1, linLossLim= 0.01
===== EM models for the G4Region DefaultRegionForTheWorld ======
MollerBhabha : Emin= 0 eV Emax= 100 TeV
eBrem: for e+ XStype:4 SubType=3
dE/dx and range tables from 100 eV to 100 TeV in 84 bins
Lambda tables from threshold to 100 TeV, 7 bins/decade, spline: 1
LPM flag: 1 for E > 1 GeV, VertexHighEnergyTh(GeV)= 100000
===== EM models for the G4Region DefaultRegionForTheWorld ======
eBremSB : Emin= 0 eV Emax= 1 GeV ModifiedTsai
eBremLPM : Emin= 1 GeV Emax= 100 TeV ModifiedTsai
annihil: for e+ XStype:2 SubType=5 BuildTable=0
===== EM models for the G4Region DefaultRegionForTheWorld ======
eplus2gg : Emin= 0 eV Emax= 100 TeV
msc: for proton SubType= 10
===== EM models for the G4Region DefaultRegionForTheWorld ======
UrbanMsc : Emin= 0 eV Emax= 100 TeV Nbins=84 100 eV - 100 TeV
StepLim=Minimal Rfact=0.2 Gfact=2.5 Sfact=0.6 DispFlag:0 Skin=1 Llim=1 mm
hIoni: for proton XStype:3 SubType=2
dE/dx and range tables from 100 eV to 100 TeV in 84 bins
Lambda tables from threshold to 100 TeV, 7 bins/decade, spline: 1
StepFunction=(0.2, 0.1 mm), integ: 3, fluct: 1, linLossLim= 0.01
===== EM models for the G4Region DefaultRegionForTheWorld ======
Bragg : Emin= 0 eV Emax= 2 MeV
BetheBloch : Emin= 2 MeV Emax= 100 TeV
msc: for GenericIon SubType= 10
===== EM models for the G4Region DefaultRegionForTheWorld ======
UrbanMsc : Emin= 0 eV Emax= 100 TeV
StepLim=Minimal Rfact=0.2 Gfact=2.5 Sfact=0.6 DispFlag:0 Skin=1 Llim=1 mm
hIoni: for GenericIon XStype:3 SubType=2
dE/dx and range tables from 100 eV to 100 TeV in 84 bins
Lambda tables from threshold to 100 TeV, 7 bins/decade, spline: 1
StepFunction=(0.2, 0.1 mm), integ: 3, fluct: 1, linLossLim= 0.01
===== EM models for the G4Region DefaultRegionForTheWorld ======
Bragg : Emin= 0 eV Emax= 2 MeV
BetheBloch : Emin= 2 MeV Emax= 100 TeV
msc: for alpha SubType= 10
===== EM models for the G4Region DefaultRegionForTheWorld ======
UrbanMsc : Emin= 0 eV Emax= 100 TeV
StepLim=Minimal Rfact=0.2 Gfact=2.5 Sfact=0.6 DispFlag:0 Skin=1 Llim=1 mm
hIoni: for alpha XStype:3 SubType=2
dE/dx and range tables from 100 eV to 100 TeV in 84 bins
Lambda tables from threshold to 100 TeV, 7 bins/decade, spline: 1
StepFunction=(0.2, 0.1 mm), integ: 3, fluct: 1, linLossLim= 0.01
===== EM models for the G4Region DefaultRegionForTheWorld ======
Bragg : Emin= 0 eV Emax=7.9452 MeV
BetheBloch : Emin=7.9452 MeV Emax= 100 TeV
msc: for anti_proton SubType= 10
===== EM models for the G4Region DefaultRegionForTheWorld ======
UrbanMsc : Emin= 0 eV Emax= 100 TeV Nbins=84 100 eV - 100 TeV
StepLim=Minimal Rfact=0.2 Gfact=2.5 Sfact=0.6 DispFlag:0 Skin=1 Llim=1 mm
hIoni: for anti_proton XStype:3 SubType=2
dE/dx and range tables from 100 eV to 100 TeV in 84 bins
Lambda tables from threshold to 100 TeV, 7 bins/decade, spline: 1
StepFunction=(0.2, 0.1 mm), integ: 3, fluct: 1, linLossLim= 0.01
===== EM models for the G4Region DefaultRegionForTheWorld ======
ICRU73QO : Emin= 0 eV Emax= 2 MeV
BetheBloch : Emin= 2 MeV Emax= 100 TeV
msc: for kaon+ SubType= 10
===== EM models for the G4Region DefaultRegionForTheWorld ======
UrbanMsc : Emin= 0 eV Emax= 100 TeV Nbins=84 100 eV - 100 TeV
StepLim=Minimal Rfact=0.2 Gfact=2.5 Sfact=0.6 DispFlag:0 Skin=1 Llim=1 mm
hIoni: for kaon+ XStype:3 SubType=2
dE/dx and range tables from 100 eV to 100 TeV in 84 bins
Lambda tables from threshold to 100 TeV, 7 bins/decade, spline: 1
StepFunction=(0.2, 0.1 mm), integ: 3, fluct: 1, linLossLim= 0.01
===== EM models for the G4Region DefaultRegionForTheWorld ======
Bragg : Emin= 0 eV Emax=1.05231 MeV
BetheBloch : Emin=1.05231 MeV Emax= 100 TeV
msc: for kaon- SubType= 10
===== EM models for the G4Region DefaultRegionForTheWorld ======
UrbanMsc : Emin= 0 eV Emax= 100 TeV Nbins=84 100 eV - 100 TeV
StepLim=Minimal Rfact=0.2 Gfact=2.5 Sfact=0.6 DispFlag:0 Skin=1 Llim=1 mm
hIoni: for kaon- XStype:3 SubType=2
dE/dx and range tables from 100 eV to 100 TeV in 84 bins
Lambda tables from threshold to 100 TeV, 7 bins/decade, spline: 1
StepFunction=(0.2, 0.1 mm), integ: 3, fluct: 1, linLossLim= 0.01
===== EM models for the G4Region DefaultRegionForTheWorld ======
ICRU73QO : Emin= 0 eV Emax=1.05231 MeV
BetheBloch : Emin=1.05231 MeV Emax= 100 TeV
msc: for mu+ SubType= 10
===== EM models for the G4Region DefaultRegionForTheWorld ======
UrbanMsc : Emin= 0 eV Emax= 100 TeV Nbins=84 100 eV - 100 TeV
StepLim=Minimal Rfact=0.2 Gfact=2.5 Sfact=0.6 DispFlag:0 Skin=1 Llim=1 mm
muIoni: for mu+ XStype:3 SubType=2
dE/dx and range tables from 100 eV to 100 TeV in 84 bins
Lambda tables from threshold to 100 TeV, 7 bins/decade, spline: 1
StepFunction=(0.2, 0.1 mm), integ: 3, fluct: 1, linLossLim= 0.01
===== EM models for the G4Region DefaultRegionForTheWorld ======
Bragg : Emin= 0 eV Emax= 200 keV
MuBetheBloch : Emin= 200 keV Emax= 100 TeV
muBrems: for mu+ XStype:1 SubType=3
dE/dx and range tables from 100 eV to 100 TeV in 84 bins
Lambda tables from threshold to 100 TeV, 7 bins/decade, spline: 1
===== EM models for the G4Region DefaultRegionForTheWorld ======
MuBrem : Emin= 0 eV Emax= 100 TeV ModifiedMephi
muPairProd: for mu+ XStype:1 SubType=4
dE/dx and range tables from 100 eV to 100 TeV in 84 bins
Lambda tables from threshold to 100 TeV, 7 bins/decade, spline: 1
Sampling table 21x1001 from 0.85 GeV to 100 TeV
===== EM models for the G4Region DefaultRegionForTheWorld ======
muPairProd : Emin= 0 eV Emax= 100 TeV ModifiedMephi
msc: for mu- SubType= 10
===== EM models for the G4Region DefaultRegionForTheWorld ======
UrbanMsc : Emin= 0 eV Emax= 100 TeV Nbins=84 100 eV - 100 TeV
StepLim=Minimal Rfact=0.2 Gfact=2.5 Sfact=0.6 DispFlag:0 Skin=1 Llim=1 mm
muIoni: for mu- XStype:3 SubType=2
dE/dx and range tables from 100 eV to 100 TeV in 84 bins
Lambda tables from threshold to 100 TeV, 7 bins/decade, spline: 1
StepFunction=(0.2, 0.1 mm), integ: 3, fluct: 1, linLossLim= 0.01
===== EM models for the G4Region DefaultRegionForTheWorld ======
ICRU73QO : Emin= 0 eV Emax= 200 keV
MuBetheBloch : Emin= 200 keV Emax= 100 TeV
muBrems: for mu- XStype:1 SubType=3
dE/dx and range tables from 100 eV to 100 TeV in 84 bins
Lambda tables from threshold to 100 TeV, 7 bins/decade, spline: 1
===== EM models for the G4Region DefaultRegionForTheWorld ======
MuBrem : Emin= 0 eV Emax= 100 TeV ModifiedMephi
muPairProd: for mu- XStype:1 SubType=4
dE/dx and range tables from 100 eV to 100 TeV in 84 bins
Lambda tables from threshold to 100 TeV, 7 bins/decade, spline: 1
Sampling table 21x1001 from 0.85 GeV to 100 TeV
===== EM models for the G4Region DefaultRegionForTheWorld ======
muPairProd : Emin= 0 eV Emax= 100 TeV ModifiedMephi
msc: for pi+ SubType= 10
===== EM models for the G4Region DefaultRegionForTheWorld ======
UrbanMsc : Emin= 0 eV Emax= 100 TeV Nbins=84 100 eV - 100 TeV
StepLim=Minimal Rfact=0.2 Gfact=2.5 Sfact=0.6 DispFlag:0 Skin=1 Llim=1 mm
hIoni: for pi+ XStype:3 SubType=2
dE/dx and range tables from 100 eV to 100 TeV in 84 bins
Lambda tables from threshold to 100 TeV, 7 bins/decade, spline: 1
StepFunction=(0.2, 0.1 mm), integ: 3, fluct: 1, linLossLim= 0.01
===== EM models for the G4Region DefaultRegionForTheWorld ======
Bragg : Emin= 0 eV Emax=297.505 keV
BetheBloch : Emin=297.505 keV Emax= 100 TeV
msc: for pi- SubType= 10
===== EM models for the G4Region DefaultRegionForTheWorld ======
UrbanMsc : Emin= 0 eV Emax= 100 TeV Nbins=84 100 eV - 100 TeV
StepLim=Minimal Rfact=0.2 Gfact=2.5 Sfact=0.6 DispFlag:0 Skin=1 Llim=1 mm
hIoni: for pi- XStype:3 SubType=2
dE/dx and range tables from 100 eV to 100 TeV in 84 bins
Lambda tables from threshold to 100 TeV, 7 bins/decade, spline: 1
StepFunction=(0.2, 0.1 mm), integ: 3, fluct: 1, linLossLim= 0.01
===== EM models for the G4Region DefaultRegionForTheWorld ======
ICRU73QO : Emin= 0 eV Emax=297.505 keV
BetheBloch : Emin=297.505 keV Emax= 100 TeV
====================================================================
HADRONIC PROCESSES SUMMARY (verbose level 1)
-----------------------------------------------------------------------
Hadronic Processes for alpha
Process: hadElastic
Model: hElasticLHEP: 0 eV /n ---> 100 TeV/n
Cr_sctns: Glauber-Gribov: 0 eV ---> 25.6 PeV
Process: inelastic
Model: Binary Light Ion Cascade: 0 eV /n ---> 110 MeV/n
Model: QMDModel: 100 MeV/n ---> 10 GeV/n
Cr_sctns: Glauber-Gribov Nucl-nucl: 0 eV ---> 25.6 PeV
-----------------------------------------------------------------------
Hadronic Processes for anti_lambda
Process: hadElastic
Model: hElasticLHEP: 0 eV ---> 100 TeV
Cr_sctns: Glauber-Gribov: 0 eV ---> 25.6 PeV
Process: inelastic
Model: ANTI-FTFP: 0 eV ---> 20 TeV
Cr_sctns: Glauber-Gribov: 0 eV ---> 100 TeV
-----------------------------------------------------------------------
Hadronic Processes for anti_neutron
Process: hadElastic
Model: hElasticLHEP: 0 eV ---> 100 TeV
Cr_sctns: Glauber-Gribov: 0 eV ---> 25.6 PeV
Process: inelastic
Model: ANTI-FTFP: 0 eV ---> 20 TeV
Cr_sctns: Glauber-Gribov: 0 eV ---> 100 TeV
-----------------------------------------------------------------------
Hadronic Processes for anti_proton
Process: hadElastic
Model: hElasticLHEP: 0 eV ---> 100 TeV
Cr_sctns: Glauber-Gribov: 0 eV ---> 25.6 PeV
Process: inelastic
Model: ANTI-FTFP: 0 eV ---> 20 TeV
Cr_sctns: Glauber-Gribov: 0 eV ---> 100 TeV
-----------------------------------------------------------------------
Hadronic Processes for deuteron
Process: hadElastic
Model: hElasticLHEP: 0 eV /n ---> 100 TeV/n
Cr_sctns: Glauber-Gribov: 0 eV ---> 25.6 PeV
Process: inelastic
Model: Binary Light Ion Cascade: 0 eV /n ---> 110 MeV/n
Model: QMDModel: 100 MeV/n ---> 10 GeV/n
Cr_sctns: Glauber-Gribov Nucl-nucl: 0 eV ---> 25.6 PeV
-----------------------------------------------------------------------
Hadronic Processes for kaon+
Process: hadElastic
Model: hElasticLHEP: 0 eV ---> 100 TeV
Cr_sctns: Glauber-Gribov: 0 eV ---> 25.6 PeV
Process: inelastic
Model: BertiniCascade: 0 eV ---> 22 MeV
Model: TheoFSGenerator: 19 GeV ---> 100 TeV
Cr_sctns: Glauber-Gribov: 0 eV ---> 100 TeV
-----------------------------------------------------------------------
Hadronic Processes for kaon-
Process: hadElastic
Model: hElasticLHEP: 0 eV ---> 100 TeV
Cr_sctns: Glauber-Gribov: 0 eV ---> 25.6 PeV
Process: inelastic
Model: BertiniCascade: 0 eV ---> 22 MeV
Model: TheoFSGenerator: 19 GeV ---> 100 TeV
Cr_sctns: Glauber-Gribov: 0 eV ---> 100 TeV
-----------------------------------------------------------------------
Hadronic Processes for lambda
Process: hadElastic
Model: hElasticLHEP: 0 eV ---> 100 TeV
Cr_sctns: Glauber-Gribov: 0 eV ---> 25.6 PeV
Process: inelastic
Model: BertiniCascade: 0 eV ---> 22 MeV
Model: TheoFSGenerator: 19 GeV ---> 100 TeV
Cr_sctns: Glauber-Gribov: 0 eV ---> 100 TeV
-----------------------------------------------------------------------
Hadronic Processes for neutron
Process: hadElastic
Model: hElasticLHEP: 0 eV ---> 100 TeV
Cr_sctns: Glauber-Gribov: 0 eV ---> 25.6 PeV
Process: inelastic
Model: BertiniCascade: 0 eV ---> 22 MeV
Model: TheoFSGenerator: 19 GeV ---> 100 TeV
Cr_sctns: G4NeutronInelasticXS: 0 eV ---> 100 TeV
Process: nFission
Model: G4LFission: 0 eV ---> 2.88022e+295 J
Cr_sctns: ZeroXS: 0 eV ---> 100 TeV
Process: nCapture
Model: nRadCapture: 0 eV ---> 100 TeV
Cr_sctns: G4NeutronCaptureXS: 0 eV ---> 100 TeV
-----------------------------------------------------------------------
Hadronic Processes for pi+
Process: hadElastic
Model: hElasticLHEP: 0 eV ---> 100 TeV
Cr_sctns: Glauber-Gribov: 0 eV ---> 25.6 PeV
Process: inelastic
Model: BertiniCascade: 0 eV ---> 22 MeV
Model: TheoFSGenerator: 19 GeV ---> 100 TeV
Cr_sctns: Glauber-Gribov: 0 eV ---> 100 TeV
-----------------------------------------------------------------------
Hadronic Processes for pi-
Process: hadElastic
Model: hElasticLHEP: 0 eV ---> 100 TeV
Cr_sctns: Glauber-Gribov: 0 eV ---> 25.6 PeV
Process: inelastic
Model: BertiniCascade: 0 eV ---> 22 MeV
Model: TheoFSGenerator: 19 GeV ---> 100 TeV
Cr_sctns: Glauber-Gribov: 0 eV ---> 100 TeV
-----------------------------------------------------------------------
Hadronic Processes for proton
Process: hadElastic
Model: hElasticLHEP: 0 eV ---> 100 TeV
Cr_sctns: Glauber-Gribov: 0 eV ---> 25.6 PeV
Process: inelastic
Model: BertiniCascade: 0 eV ---> 22 MeV
Model: TheoFSGenerator: 19 GeV ---> 100 TeV
Cr_sctns: Glauber-Gribov: 0 eV ---> 100 TeV
-----------------------------------------------------------------------
Hadronic Processes for sigma-
Process: hadElastic
Model: hElasticLHEP: 0 eV ---> 100 TeV
Cr_sctns: Glauber-Gribov: 0 eV ---> 25.6 PeV
Process: inelastic
Model: BertiniCascade: 0 eV ---> 22 MeV
Model: TheoFSGenerator: 19 GeV ---> 100 TeV
Cr_sctns: Glauber-Gribov: 0 eV ---> 100 TeV
-----------------------------------------------------------------------
Hadronic Processes for triton
Process: hadElastic
Model: hElasticLHEP: 0 eV /n ---> 100 TeV/n
Cr_sctns: Glauber-Gribov: 0 eV ---> 25.6 PeV
Process: inelastic
Model: Binary Light Ion Cascade: 0 eV /n ---> 110 MeV/n
Model: QMDModel: 100 MeV/n ---> 10 GeV/n
Cr_sctns: Glauber-Gribov Nucl-nucl: 0 eV ---> 25.6 PeV
=======================================================================
====== Geant4 Native Pre-compound Model Parameters ========
=======================================================================
Type of pre-compound inverse x-section 3
Pre-compound model active 1
Pre-compound excitation low energy 100 keV
Pre-compound excitation high energy 30 MeV
Angular generator for pre-compound model 1
Use NeverGoBack option for pre-compound model 0
Use SoftCutOff option for pre-compound model 0
Use CEM transitions for pre-compound model 1
Use GNASH transitions for pre-compound model 0
Use HETC submodel for pre-compound model 0
=======================================================================
====== Nuclear De-excitation Module Parameters ========
=======================================================================
Type of de-excitation inverse x-section 3
Type of de-excitation factory Evaporation+GEM
Number of de-excitation channels 68
Min excitation energy 10 eV
Min energy per nucleon for multifragmentation 200 GeV
Limit excitation energy for Fermi BreakUp 20 MeV
Level density (1/MeV) 0.075
Use simple level density model 1
Use discrete excitation energy of the residual 1
Time limit for long lived isomeres 1 ns
Isomer production flag 1
Internal e- conversion flag 1
Store e- internal conversion data 0
Correlated gamma emission flag 0
Max 2J for sampling of angular correlations 10
=======================================================================
++ ConcreteSD/Collisions id 0
++ ConcreteSD/CollWeight id 1
++ ConcreteSD/Population id 2
++ ConcreteSD/TrackEnter id 3
++ ConcreteSD/SL id 4
++ ConcreteSD/SLW id 5
++ ConcreteSD/SLWE id 6
++ ConcreteSD/SLW_V id 7
++ ConcreteSD/SLWE_V id 8
### Run 0 start.
-------- WWWW ------- G4Exception-START -------- WWWW -------
*** G4Exception : GeomBias1001
issued by : G4ImportanceAlgorithm::Warning()
Calculate() - ipre_over_ipost ! in [0.25, 4].
ipre_over_ipost = 4096.
*** This is just a warning message. ***
-------- WWWW -------- G4Exception-END --------- WWWW -------
###### EndOfRunAction
getting hits map ConcreteSD/Collisions
getting hits map ConcreteSD/CollWeight
getting hits map ConcreteSD/Population
getting hits map ConcreteSD/TrackEnter
getting hits map ConcreteSD/SL
getting hits map ConcreteSD/SLW
getting hits map ConcreteSD/SLWE
getting hits map ConcreteSD/SLW_V
getting hits map ConcreteSD/SLWE_V
--------------------End of Global Run-----------------------
Number of event processed : 100
=============================================================
=============================================================
Volume | Tr.Entering | Population | Collisions | Coll*WGT | NumWGTedE | FluxWGTedE | Av.Tr.WGT | SL | SLW | SLW_v | SLWE | SLWE_v |
cell_00 | 41 | 138 | 0 | 0 | 0.00240356 | 1.077 | 1 | 6159.05 | 6159.05 | 132125 | 6633.31 | 317.572 |
cell_01 | 169 | 190 | 424 | 424 | 0.00228811 | 4.17243 | 1 | 26415.8 | 26415.8 | 1.33919e+06 | 110218 | 3064.22 |
cell_02 | 214 | 330 | 1045 | 522.5 | 0.00139409 | 2.60265 | 0.5 | 62000 | 31000 | 1.85181e+06 | 80682.3 | 2581.59 |
cell_03 | 346 | 495 | 1906 | 476.5 | 0.000819533 | 1.92913 | 0.25 | 99535 | 24883.7 | 1.98326e+06 | 48004.1 | 1625.35 |
cell_04 | 514 | 734 | 2900 | 362.5 | 0.000357048 | 1.45063 | 0.125 | 152907 | 19113.3 | 2.83986e+06 | 27726.4 | 1013.96 |
cell_05 | 791 | 1072 | 4505 | 281.562 | 0.000230628 | 1.12145 | 0.0625 | 219777 | 13736.1 | 2.51847e+06 | 15404.3 | 580.831 |
cell_06 | 1115 | 1536 | 6610 | 206.562 | 0.000195251 | 0.978478 | 0.03125 | 319346 | 9979.56 | 1.9451e+06 | 9764.78 | 379.782 |
cell_07 | 1392 | 1924 | 8315 | 129.922 | 0.000174929 | 0.967975 | 0.015625 | 391881 | 6123.15 | 1.31848e+06 | 5927.05 | 230.64 |
cell_08 | 1643 | 2277 | 9963 | 77.8359 | 0.000142129 | 0.834791 | 0.0078125 | 466220 | 3642.34 | 886228 | 3040.59 | 125.959 |
cell_09 | 2006 | 2718 | 12208 | 47.6875 | 0.000108686 | 0.698384 | 0.00390625 | 555809 | 2171.13 | 595026 | 1516.28 | 64.6712 |
cell_10 | 2322 | 3213 | 14494 | 28.3086 | 0.000100983 | 0.629744 | 0.00195312 | 652526 | 1274.47 | 349466 | 802.587 | 35.2903 |
cell_11 | 2691 | 3703 | 16774 | 16.3809 | 0.00010287 | 0.595493 | 0.000976562 | 750778 | 733.181 | 191158 | 436.605 | 19.6644 |
cell_12 | 3154 | 4300 | 20231 | 9.87842 | 9.35143e-05 | 0.529399 | 0.000488281 | 900435 | 439.666 | 115697 | 232.758 | 10.8193 |
cell_13 | 3565 | 4927 | 22717 | 5.54614 | 8.13106e-05 | 0.47145 | 0.000244141 | 1.0099e+06 | 246.558 | 68469.2 | 116.24 | 5.56727 |
cell_14 | 3813 | 5326 | 24435 | 2.98279 | 7.21813e-05 | 0.432703 | 0.00012207 | 1.07604e+06 | 131.353 | 38932 | 56.8368 | 2.81016 |
cell_15 | 4081 | 5699 | 27105 | 1.65436 | 6.85807e-05 | 0.431084 | 6.10352e-05 | 1.18065e+06 | 72.0609 | 22474.7 | 31.0643 | 1.54133 |
cell_16 | 4354 | 6061 | 27840 | 0.849609 | 6.75463e-05 | 0.439274 | 3.05176e-05 | 1.21743e+06 | 37.153 | 11950.1 | 16.3203 | 0.807187 |
cell_17 | 4405 | 6371 | 29171 | 0.445114 | 6.38365e-05 | 0.403215 | 1.52588e-05 | 1.27188e+06 | 19.4074 | 6260.36 | 7.82534 | 0.399639 |
cell_18 | 3155 | 5872 | 24533 | 0.187172 | 7.20439e-05 | 0.428497 | 7.62939e-06 | 1.08986e+06 | 8.315 | 2589.5 | 3.56295 | 0.186558 |
cell_19 | 2622 | 2622 | 0 | 0 | 9.85005e-05 | 0.549683 | 7.62939e-06 | 421241 | 3.21381 | 901.175 | 1.76658 | 0.0887662 |
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