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geant4/examples/extended/biasing/B05/exampleB05.out
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2016-06-08 16:39:52 +02:00

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**********************************************
Geant4 version $Name: geant4-04-01 $
(28-Feb-2002)
Copyright : Geant4 Collaboration
**********************************************
Going to assign importance: 1, to volumeworldCylinder_phys
Going to assign importance: 2, to volumecell: 02, shield
Going to assign importance: 4, to volumecell: 03, shield
Going to assign importance: 8, to volumecell: 04, shield
phot: Total cross sections from Sandia parametrisation.
B05PhysicsList::SetCuts:CutLength : 1 (mm)
conv: Total cross sections from a parametrisation. Good description from 1.5 MeV to 100 GeV for all Z.
e+e- energies according Bethe-Heitler
PhysicsTables from 1.022 MeV to 100 GeV in 100 bins.
compt: Total cross sections from a parametrisation. Good description from 10 KeV to (100/Z) GeV.
Scattered gamma energy according Klein-Nishina.
PhysicsTables from 1 keV to 100 GeV in 80 bins.
msc: Tables of transport mean free paths.
New model of MSC , computes the lateral
displacement of the particle , too.
PhysicsTables from 100 eV to 100 TeV in 100 bins.
eIoni: delta cross sections from Moller+Bhabha. Good description from 1 KeV to 100 GeV.
delta ray energy sampled from differential Xsection.
PhysicsTables from 1 keV to 100 TeV in 100 bins.
eBrem: Total cross sections from a NEW parametrisation based on the EEDL data library.
Good description from 1 KeV to 100 GeV.
log scale extrapolation above 100 GeV
Gamma energy sampled from a parametrised formula.
PhysicsTables from 1 keV to 100 TeV in 100 bins.
annihil: Total cross section from Heilter formula(annihilation into 2 photons).
gamma energies sampled according Heitler
PhysicsTables from 10 keV to 10 TeV in 100 bins.
msc: Tables of transport mean free paths.
New model of MSC , computes the lateral
displacement of the particle , too.
PhysicsTables from 100 eV to 100 TeV in 100 bins.
hIoni: Knock-on electron cross sections .
Good description above the mean excitation energy.
delta ray energy sampled from differential Xsection.
PhysicsTables from 1 keV to 100 TeV in 100 bins.
msc: Tables of transport mean free paths.
New model of MSC , computes the lateral
displacement of the particle , too.
PhysicsTables from 100 eV to 100 TeV in 100 bins.
MuIoni: Knock-on electron cross sections .
Good description above the mean excitation energy.
delta ray energy sampled from differential Xsection.
PhysicsTables from 1 keV to 1000 PeV in 150 bins.
MuBrems: theoretical cross section
Good description up to 1000 PeV.
PhysicsTables from 1 keV to 1000 PeV in 150 bins.
MuPairProd: theoretical cross sections
Good description up to 1000 PeV.
PhysicsTables from 1 keV to 1000 PeV in 150 bins.
+++ G4ProcessPlacer::G4ProcessPlacer: for: neutron
=== G4ProcessPlacer::AddProcessAsSecondDoIt ===
ProcessName: MScoreProcess
The initial Vectors:
GPIL Vector:
Decay
LCapture
LFission
inelastic
LElastic
Transportation
DoIt Vector:
Transportation
LElastic
inelastic
LFission
LCapture
Decay
The final Vectors:
GPIL Vector:
Decay
LCapture
LFission
inelastic
LElastic
MScoreProcess
Transportation
DoIt Vector:
Transportation
MScoreProcess
LElastic
inelastic
LFission
LCapture
Decay
================================================
+++ G4ProcessPlacer::G4ProcessPlacer: for: neutron
=== G4ProcessPlacer::AddProcessAsSecondDoIt ===
ProcessName: MassImportanceProcess
The initial Vectors:
GPIL Vector:
Decay
LCapture
LFission
inelastic
LElastic
MScoreProcess
Transportation
DoIt Vector:
Transportation
MScoreProcess
LElastic
inelastic
LFission
LCapture
Decay
The final Vectors:
GPIL Vector:
Decay
LCapture
LFission
inelastic
LElastic
MScoreProcess
MassImportanceProcess
Transportation
DoIt Vector:
Transportation
MassImportanceProcess
MScoreProcess
LElastic
inelastic
LFission
LCapture
Decay
================================================
WARNING - G4ImportanceAlgorithm::Calculate: ipre_over_ipost ! in [0.25, 4]: ipre_over_ipost = 8
output aScorer, tracking geometry, neutron
Volume name = worldCylinder_phys, Replica number = -1
WeighteOfHistorysEntering
entries : 356
Sum(w) : 356
Sum(w*x) : 356
Sum(w*x*x) : 356
mean=Sum(w*x) / Sum(w) : 1
sigma=sqrt(Sum(w*x*x)/Sum(w)-mean^2): 0
Sum(x) : 356
Sum(x^2) : 356
HistorysEnteringWeighted
entries : 356
Sum(w) : 356
Sum(w*x) : 356
Sum(w*x*x) : 356
mean=Sum(w*x) / Sum(w) : 1
sigma=sqrt(Sum(w*x*x)/Sum(w)-mean^2): 0
Sum(x) : 356
Sum(x^2) : 356
EnergyEnteringHistoryWeighted
entries : 356
Sum(w) : 356
Sum(w*x) : 2974.88
Sum(w*x*x) : 26871.2
mean=Sum(w*x) / Sum(w) : 8.35641
sigma=sqrt(Sum(w*x*x)/Sum(w)-mean^2): 2.37721
Sum(x) : 2974.88
Sum(x^2) : 26871.2
Volume name = cell: 02, shield, Replica number = 0
WeighteOfHistorysEntering
entries : 1146
Sum(w) : 1146
Sum(w*x) : 573
Sum(w*x*x) : 286.5
mean=Sum(w*x) / Sum(w) : 0.5
sigma=sqrt(Sum(w*x*x)/Sum(w)-mean^2): 0
Sum(x) : 573
Sum(x^2) : 286.5
HistorysEnteringWeighted
entries : 1146
Sum(w) : 573
Sum(w*x) : 573
Sum(w*x*x) : 573
mean=Sum(w*x) / Sum(w) : 1
sigma=sqrt(Sum(w*x*x)/Sum(w)-mean^2): 0
Sum(x) : 1146
Sum(x^2) : 1146
EnergyEnteringHistoryWeighted
entries : 1146
Sum(w) : 573
Sum(w*x) : 5518.16
Sum(w*x*x) : 54083.1
mean=Sum(w*x) / Sum(w) : 9.63029
sigma=sqrt(Sum(w*x*x)/Sum(w)-mean^2): 1.28189
Sum(x) : 11036.3
Sum(x^2) : 108166
WeighteOfCollisions
entries : 2685
Sum(w) : 2685
Sum(w*x) : 1342.5
Sum(w*x*x) : 671.25
mean=Sum(w*x) / Sum(w) : 0.5
sigma=sqrt(Sum(w*x*x)/Sum(w)-mean^2): 0
Sum(x) : 1342.5
Sum(x^2) : 671.25
CollisionsWeighted
entries : 2685
Sum(w) : 1342.5
Sum(w*x) : 1342.5
Sum(w*x*x) : 1342.5
mean=Sum(w*x) / Sum(w) : 1
sigma=sqrt(Sum(w*x*x)/Sum(w)-mean^2): 0
Sum(x) : 2685
Sum(x^2) : 2685
Volume name = cell: 03, shield, Replica number = 0
WeighteOfHistorysEntering
entries : 1416
Sum(w) : 1416
Sum(w*x) : 354
Sum(w*x*x) : 88.5
mean=Sum(w*x) / Sum(w) : 0.25
sigma=sqrt(Sum(w*x*x)/Sum(w)-mean^2): 0
Sum(x) : 354
Sum(x^2) : 88.5
HistorysEnteringWeighted
entries : 1416
Sum(w) : 354
Sum(w*x) : 354
Sum(w*x*x) : 354
mean=Sum(w*x) / Sum(w) : 1
sigma=sqrt(Sum(w*x*x)/Sum(w)-mean^2): 0
Sum(x) : 1416
Sum(x^2) : 1416
EnergyEnteringHistoryWeighted
entries : 1416
Sum(w) : 354
Sum(w*x) : 3338.06
Sum(w*x*x) : 32325.3
mean=Sum(w*x) / Sum(w) : 9.42954
sigma=sqrt(Sum(w*x*x)/Sum(w)-mean^2): 1.54859
Sum(x) : 13352.2
Sum(x^2) : 129301
WeighteOfCollisions
entries : 3458
Sum(w) : 3458
Sum(w*x) : 864.5
Sum(w*x*x) : 216.125
mean=Sum(w*x) / Sum(w) : 0.25
sigma=sqrt(Sum(w*x*x)/Sum(w)-mean^2): 0
Sum(x) : 864.5
Sum(x^2) : 216.125
CollisionsWeighted
entries : 3458
Sum(w) : 864.5
Sum(w*x) : 864.5
Sum(w*x*x) : 864.5
mean=Sum(w*x) / Sum(w) : 1
sigma=sqrt(Sum(w*x*x)/Sum(w)-mean^2): 0
Sum(x) : 3458
Sum(x^2) : 3458
Volume name = cell: 04, shield, Replica number = 0
WeighteOfHistorysEntering
entries : 1522
Sum(w) : 1522
Sum(w*x) : 190.25
Sum(w*x*x) : 23.7812
mean=Sum(w*x) / Sum(w) : 0.125
sigma=sqrt(Sum(w*x*x)/Sum(w)-mean^2): 0
Sum(x) : 190.25
Sum(x^2) : 23.7812
HistorysEnteringWeighted
entries : 1522
Sum(w) : 190.25
Sum(w*x) : 190.25
Sum(w*x*x) : 190.25
mean=Sum(w*x) / Sum(w) : 1
sigma=sqrt(Sum(w*x*x)/Sum(w)-mean^2): 0
Sum(x) : 1522
Sum(x^2) : 1522
EnergyEnteringHistoryWeighted
entries : 1522
Sum(w) : 190.25
Sum(w*x) : 1801.32
Sum(w*x*x) : 17506.7
mean=Sum(w*x) / Sum(w) : 9.46817
sigma=sqrt(Sum(w*x*x)/Sum(w)-mean^2): 1.54053
Sum(x) : 14410.6
Sum(x^2) : 140054
WeighteOfCollisions
entries : 4193
Sum(w) : 4193
Sum(w*x) : 524.125
Sum(w*x*x) : 65.5156
mean=Sum(w*x) / Sum(w) : 0.125
sigma=sqrt(Sum(w*x*x)/Sum(w)-mean^2): 0
Sum(x) : 524.125
Sum(x^2) : 65.5156
CollisionsWeighted
entries : 4193
Sum(w) : 524.125
Sum(w*x) : 524.125
Sum(w*x*x) : 524.125
mean=Sum(w*x) / Sum(w) : 1
sigma=sqrt(Sum(w*x*x)/Sum(w)-mean^2): 0
Sum(x) : 4193
Sum(x^2) : 4193
----------------------------------------------
+++ G4ProcessPlacer::G4ProcessPlacer: for: neutron
ProcessName: MScoreProcess, will be removed!
The initial Vectors:
GPIL Vector:
Decay
LCapture
LFission
inelastic
LElastic
MScoreProcess
MassImportanceProcess
Transportation
DoIt Vector:
Transportation
MassImportanceProcess
MScoreProcess
LElastic
inelastic
LFission
LCapture
Decay
The final Vectors:
GPIL Vector:
Decay
LCapture
LFission
inelastic
LElastic
MassImportanceProcess
Transportation
DoIt Vector:
Transportation
MassImportanceProcess
LElastic
inelastic
LFission
LCapture
Decay
+++ G4ProcessPlacer::G4ProcessPlacer: for: neutron
ProcessName: MassImportanceProcess, will be removed!
The initial Vectors:
GPIL Vector:
Decay
LCapture
LFission
inelastic
LElastic
MassImportanceProcess
Transportation
DoIt Vector:
Transportation
MassImportanceProcess
LElastic
inelastic
LFission
LCapture
Decay
The final Vectors:
GPIL Vector:
Decay
LCapture
LFission
inelastic
LElastic
Transportation
DoIt Vector:
Transportation
LElastic
inelastic
LFission
LCapture
Decay
WARNING - G4ImportanceAlgorithm::~G4ImportanceAlgorithm: ipre_over_ipost ! in [0.25, 4] seen
WARNING - Attempt to delete the physical volume store while geometry closed !
WARNING - Attempt to delete the logical volume store while geometry closed !
WARNING - Attempt to delete the solid store while geometry closed !