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geant4/examples/basic/B5/exampleB5.out
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2020-05-29 14:54:29 +02:00

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############################################
!!! WARNING - FPE detection is activated !!!
############################################
**************************************************************
Geant4 version Name: geant4-10-06-patch-02 (29-May-2020)
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/
**************************************************************
<<< Geant4 Physics List simulation engine: FTFP_BERT
Using Root
Visualization Manager instantiating with verbosity "warnings (3)"...
Visualization Manager initialising...
Registering graphics systems...
You have successfully registered the following graphics systems.
Current available graphics systems are:
ASCIITree (ATree)
DAWNFILE (DAWNFILE)
G4HepRep (HepRepXML)
G4HepRepFile (HepRepFile)
RayTracer (RayTracer)
VRML1FILE (VRML1FILE)
VRML2FILE (VRML2FILE)
gMocrenFile (gMocrenFile)
OpenGLImmediateXm (OGLIXm, OGLI)
OpenGLStoredXm (OGLSXm, OGL, OGLS)
OpenGLImmediateX (OGLIX, OGLIXm_FALLBACK)
OpenGLStoredX (OGLSX, OGLSXm_FALLBACK)
RayTracerX (RayTracerX)
Registering model factories...
You have successfully registered the following model factories.
Registered model factories:
generic
drawByAttribute
drawByCharge
drawByOriginVolume
drawByParticleID
drawByEncounteredVolume
Registered filter factories:
attributeFilter
chargeFilter
originVolumeFilter
particleFilter
encounteredVolumeFilter
You have successfully registered the following user vis actions.
Run Duration User Vis Actions: none
End of Event User Vis Actions: none
End of Run User Vis Actions: none
Some /vis commands (optionally) take a string to specify colour.
"/vis/list" to see available colours.
The materials defined are :
***** Table : Nb of materials = 5 *****
Material: G4_AIR density: 1.205 mg/cm3 RadL: 303.921 m Nucl.Int.Length: 710.095 m
Imean: 85.700 eV temperature: 293.15 K pressure: 1.00 atm
---> Element: C (C) Z = 6.0 N = 12 A = 12.011 g/mole
---> Isotope: C12 Z = 6 N = 12 A = 12.00 g/mole abundance: 98.930 %
---> Isotope: C13 Z = 6 N = 13 A = 13.00 g/mole abundance: 1.070 %
ElmMassFraction: 0.01 % ElmAbundance 0.02 %
---> Element: N (N) Z = 7.0 N = 14 A = 14.007 g/mole
---> Isotope: N14 Z = 7 N = 14 A = 14.00 g/mole abundance: 99.632 %
---> Isotope: N15 Z = 7 N = 15 A = 15.00 g/mole abundance: 0.368 %
ElmMassFraction: 75.53 % ElmAbundance 78.44 %
---> Element: O (O) Z = 8.0 N = 16 A = 15.999 g/mole
---> Isotope: O16 Z = 8 N = 16 A = 15.99 g/mole abundance: 99.757 %
---> Isotope: O17 Z = 8 N = 17 A = 17.00 g/mole abundance: 0.038 %
---> Isotope: O18 Z = 8 N = 18 A = 18.00 g/mole abundance: 0.205 %
ElmMassFraction: 23.18 % ElmAbundance 21.07 %
---> Element: Ar (Ar) Z = 18.0 N = 40 A = 39.948 g/mole
---> Isotope: Ar36 Z = 18 N = 36 A = 35.97 g/mole abundance: 0.337 %
---> Isotope: Ar38 Z = 18 N = 38 A = 37.96 g/mole abundance: 0.063 %
---> Isotope: Ar40 Z = 18 N = 40 A = 39.96 g/mole abundance: 99.600 %
ElmMassFraction: 1.28 % ElmAbundance 0.47 %
Material: G4_Ar density: 1.662 mg/cm3 RadL: 117.621 m Nucl.Int.Length: 719.888 m
Imean: 188.000 eV temperature: 293.15 K pressure: 1.00 atm
---> Element: Ar (Ar) Z = 18.0 N = 40 A = 39.948 g/mole
---> Isotope: Ar36 Z = 18 N = 36 A = 35.97 g/mole abundance: 0.337 %
---> Isotope: Ar38 Z = 18 N = 38 A = 37.96 g/mole abundance: 0.063 %
---> Isotope: Ar40 Z = 18 N = 40 A = 39.96 g/mole abundance: 99.600 %
ElmMassFraction: 100.00 % ElmAbundance 100.00 %
Material: G4_PLASTIC_SC_VINYLTOLUENE density: 1.032 g/cm3 RadL: 42.544 cm Nucl.Int.Length: 69.969 cm
Imean: 64.700 eV temperature: 293.15 K pressure: 1.00 atm
---> Element: C (C) Z = 6.0 N = 12 A = 12.011 g/mole
---> Isotope: C12 Z = 6 N = 12 A = 12.00 g/mole abundance: 98.930 %
---> Isotope: C13 Z = 6 N = 13 A = 13.00 g/mole abundance: 1.070 %
ElmMassFraction: 91.47 % ElmAbundance 47.37 %
---> Element: H (H) Z = 1.0 N = 1 A = 1.008 g/mole
---> Isotope: H1 Z = 1 N = 1 A = 1.01 g/mole abundance: 99.989 %
---> Isotope: H2 Z = 1 N = 2 A = 2.01 g/mole abundance: 0.011 %
ElmMassFraction: 8.53 % ElmAbundance 52.63 %
Material: G4_CESIUM_IODIDE density: 4.510 g/cm3 RadL: 1.860 cm Nucl.Int.Length: 39.306 cm
Imean: 553.100 eV temperature: 293.15 K pressure: 1.00 atm
---> Element: Cs (Cs) Z = 55.0 N = 133 A = 132.905 g/mole
---> Isotope: Cs133 Z = 55 N = 133 A = 132.91 g/mole abundance: 100.000 %
ElmMassFraction: 51.15 % ElmAbundance 50.00 %
---> Element: I (I) Z = 53.0 N = 127 A = 126.904 g/mole
---> Isotope: I127 Z = 53 N = 127 A = 126.90 g/mole abundance: 100.000 %
ElmMassFraction: 48.85 % ElmAbundance 50.00 %
Material: G4_Pb density: 11.350 g/cm3 RadL: 5.613 mm Nucl.Int.Length: 18.248 cm
Imean: 823.000 eV temperature: 293.15 K pressure: 1.00 atm
---> Element: Pb (Pb) Z = 82.0 N = 207 A = 207.217 g/mole
---> Isotope: Pb204 Z = 82 N = 204 A = 203.97 g/mole abundance: 1.400 %
---> Isotope: Pb206 Z = 82 N = 206 A = 205.97 g/mole abundance: 24.100 %
---> Isotope: Pb207 Z = 82 N = 207 A = 206.98 g/mole abundance: 22.100 %
---> Isotope: Pb208 Z = 82 N = 208 A = 207.98 g/mole abundance: 52.400 %
ElmMassFraction: 100.00 % ElmAbundance 100.00 %
Checking overlaps for volume magneticPhysical (G4Tubs) ... OK!
Checking overlaps for volume firstArmPhysical (G4Box) ... OK!
Checking overlaps for volume fSecondArmPhys (G4Box) ... OK!
Checking overlaps for volume hodoscope1Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope1Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope1Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope1Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope1Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope1Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope1Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope1Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope1Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope1Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope1Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope1Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope1Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope1Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope1Physical (G4Box) ... OK!
Checking overlaps for volume chamber1Physical (G4Box) ... OK!
Checking overlaps for volume chamber1Physical (G4Box) ... OK!
Checking overlaps for volume chamber1Physical (G4Box) ... OK!
Checking overlaps for volume chamber1Physical (G4Box) ... OK!
Checking overlaps for volume chamber1Physical (G4Box) ... OK!
Checking overlaps for volume wirePlane1Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical (G4Box) ... OK!
Checking overlaps for volume chamber2Physical (G4Box) ... OK!
Checking overlaps for volume chamber2Physical (G4Box) ... OK!
Checking overlaps for volume chamber2Physical (G4Box) ... OK!
Checking overlaps for volume chamber2Physical (G4Box) ... OK!
Checking overlaps for volume chamber2Physical (G4Box) ... OK!
Checking overlaps for volume wirePlane2Physical (G4Box) ... OK!
Checking overlaps for volume EMcalorimeterPhysical (G4Box) ... OK!
Checking overlaps for volume HadCalorimeterPhysical (G4Box) ... OK!
Checking overlaps for volume HadCalScintiPhysical (G4Box) ... OK!
FTFP_BERT : new threshold between BERT and FTFP is over the interval
for pions : 3 to 6 GeV
for kaons : 3 to 6 GeV
for proton : 3 to 6 GeV
for neutron : 3 to 6 GeV
### Adding tracking cuts for neutron TimeCut(ns)= 10000 KinEnergyCut(MeV)= 0
phot: for gamma SubType=12 BuildTable=0
LambdaPrime table from 200 keV to 100 TeV in 61 bins
===== EM models for the G4Region DefaultRegionForTheWorld ======
LivermorePhElectric : Emin= 0 eV Emax= 100 TeV SauterGavrila Fluo
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
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
Rayl: for gamma SubType=11 BuildTable=1
Lambda table from 100 eV to 100 keV, 7 bins/decade, spline: 0
LambdaPrime table from 100 keV to 100 TeV in 63 bins
===== EM models for the G4Region DefaultRegionForTheWorld ======
LivermoreRayleigh : Emin= 0 eV Emax= 100 TeV CullenGenerator
msc: for e- SubType= 10
RangeFactor= 0.04, stepLimType: 1, latDisp: 1
===== EM models for the G4Region DefaultRegionForTheWorld ======
UrbanMsc : Emin= 0 eV Emax= 100 MeV Nbins=42 100 eV - 100 MeV
WentzelVIUni : Emin= 100 MeV Emax= 100 TeV Nbins=42 100 MeV - 100 TeV
eIoni: for e- 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: 1, fluct: 1, linLossLim= 0.01
===== EM models for the G4Region DefaultRegionForTheWorld ======
MollerBhabha : Emin= 0 eV Emax= 100 TeV
eBrem: for e- 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
CoulombScat: for e-, integral:1 SubType=1 BuildTable=1
Lambda table from 100 MeV to 100 TeV, 7 bins/decade, spline: 1
ThetaMin(p) < Theta(degree) < 180 pLimit(GeV^1)= 0.139531
===== EM models for the G4Region DefaultRegionForTheWorld ======
eCoulombScattering : Emin= 100 MeV Emax= 100 TeV
msc: for e+ SubType= 10
RangeFactor= 0.04, stepLimType: 1, latDisp: 1
===== EM models for the G4Region DefaultRegionForTheWorld ======
UrbanMsc : Emin= 0 eV Emax= 100 MeV Nbins=42 100 eV - 100 MeV
WentzelVIUni : Emin= 100 MeV Emax= 100 TeV Nbins=42 100 MeV - 100 TeV
eIoni: for e+ 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: 1, fluct: 1, linLossLim= 0.01
===== EM models for the G4Region DefaultRegionForTheWorld ======
MollerBhabha : Emin= 0 eV Emax= 100 TeV
eBrem: for e+ 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+, integral:1 SubType=5 BuildTable=0
===== EM models for the G4Region DefaultRegionForTheWorld ======
eplus2gg : Emin= 0 eV Emax= 100 TeV
CoulombScat: for e+, integral:1 SubType=1 BuildTable=1
Lambda table from 100 MeV to 100 TeV, 7 bins/decade, spline: 1
ThetaMin(p) < Theta(degree) < 180 pLimit(GeV^1)= 0.139531
===== EM models for the G4Region DefaultRegionForTheWorld ======
eCoulombScattering : Emin= 100 MeV Emax= 100 TeV
msc: for proton SubType= 10
RangeFactor= 0.2, stepLimType: 0, latDisp: 0
===== EM models for the G4Region DefaultRegionForTheWorld ======
WentzelVIUni : Emin= 0 eV Emax= 100 TeV Nbins=84 100 eV - 100 TeV
hIoni: for proton 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: 1, 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
hBrems: for proton 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 ======
hBrem : Emin= 0 eV Emax= 100 TeV
hPairProd: for proton 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 17x1001 from 7.50618 GeV to 100 TeV
===== EM models for the G4Region DefaultRegionForTheWorld ======
hPairProd : Emin= 0 eV Emax= 100 TeV
CoulombScat: for proton, integral:1 SubType=1 BuildTable=1
Lambda table from threshold to 100 TeV, 7 bins/decade, spline: 1
ThetaMin(p) < Theta(degree) < 180 pLimit(GeV^1)= 0.139531
===== EM models for the G4Region DefaultRegionForTheWorld ======
eCoulombScattering : Emin= 0 eV Emax= 100 TeV
msc: for GenericIon SubType= 10
RangeFactor= 0.2, stepLimType: 0, latDisp: 0
===== EM models for the G4Region DefaultRegionForTheWorld ======
UrbanMsc : Emin= 0 eV Emax= 100 TeV
ionIoni: for GenericIon 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: 1, fluct: 1, linLossLim= 0.02
Stopping Power data for 17 ion/material pairs
===== EM models for the G4Region DefaultRegionForTheWorld ======
BraggIon : Emin= 0 eV Emax= 2 MeV
BetheBloch : Emin= 2 MeV Emax= 100 TeV
msc: for alpha SubType= 10
RangeFactor= 0.2, stepLimType: 0, latDisp: 0
===== EM models for the G4Region DefaultRegionForTheWorld ======
UrbanMsc : Emin= 0 eV Emax= 100 TeV Nbins=84 100 eV - 100 TeV
ionIoni: for alpha 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: 1, fluct: 1, linLossLim= 0.02
===== EM models for the G4Region DefaultRegionForTheWorld ======
BraggIon : Emin= 0 eV Emax=7.9452 MeV
BetheBloch : Emin=7.9452 MeV Emax= 100 TeV
msc: for anti_proton SubType= 10
RangeFactor= 0.2, stepLimType: 0, latDisp: 0
===== EM models for the G4Region DefaultRegionForTheWorld ======
WentzelVIUni : Emin= 0 eV Emax= 100 TeV Nbins=84 100 eV - 100 TeV
hIoni: for anti_proton 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: 1, 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
hBrems: for anti_proton 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 ======
hBrem : Emin= 0 eV Emax= 100 TeV
hPairProd: for anti_proton 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 17x1001 from 7.50618 GeV to 100 TeV
===== EM models for the G4Region DefaultRegionForTheWorld ======
hPairProd : Emin= 0 eV Emax= 100 TeV
CoulombScat: for anti_proton, integral:1 SubType=1 BuildTable=1
Lambda table from threshold to 100 TeV, 7 bins/decade, spline: 1
ThetaMin(p) < Theta(degree) < 180 pLimit(GeV^1)= 0.139531
===== EM models for the G4Region DefaultRegionForTheWorld ======
eCoulombScattering : Emin= 0 eV Emax= 100 TeV
msc: for kaon+ SubType= 10
RangeFactor= 0.2, stepLimType: 0, latDisp: 0
===== EM models for the G4Region DefaultRegionForTheWorld ======
WentzelVIUni : Emin= 0 eV Emax= 100 TeV Nbins=84 100 eV - 100 TeV
hIoni: for kaon+ 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: 1, 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
hBrems: for kaon+ 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 ======
hBrem : Emin= 0 eV Emax= 100 TeV
hPairProd: for kaon+ 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 18x1001 from 3.94942 GeV to 100 TeV
===== EM models for the G4Region DefaultRegionForTheWorld ======
hPairProd : Emin= 0 eV Emax= 100 TeV
CoulombScat: for kaon+, integral:1 SubType=1 BuildTable=1
Lambda table from threshold to 100 TeV, 7 bins/decade, spline: 1
ThetaMin(p) < Theta(degree) < 180 pLimit(GeV^1)= 0.139531
===== EM models for the G4Region DefaultRegionForTheWorld ======
eCoulombScattering : Emin= 0 eV Emax= 100 TeV
msc: for kaon- SubType= 10
RangeFactor= 0.2, stepLimType: 0, latDisp: 0
===== EM models for the G4Region DefaultRegionForTheWorld ======
WentzelVIUni : Emin= 0 eV Emax= 100 TeV Nbins=84 100 eV - 100 TeV
hIoni: for kaon- 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: 1, 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
hBrems: for kaon- 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 ======
hBrem : Emin= 0 eV Emax= 100 TeV
hPairProd: for kaon- 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 18x1001 from 3.94942 GeV to 100 TeV
===== EM models for the G4Region DefaultRegionForTheWorld ======
hPairProd : Emin= 0 eV Emax= 100 TeV
CoulombScat: for kaon-, integral:1 SubType=1 BuildTable=1
Used Lambda table of kaon+
ThetaMin(p) < Theta(degree) < 180 pLimit(GeV^1)= 0.139531
===== EM models for the G4Region DefaultRegionForTheWorld ======
eCoulombScattering : Emin= 0 eV Emax= 100 TeV
msc: for mu+ SubType= 10
RangeFactor= 0.2, stepLimType: 0, latDisp: 0, polarAngLim(deg)= 180
===== EM models for the G4Region DefaultRegionForTheWorld ======
WentzelVIUni : Emin= 0 eV Emax= 100 TeV Nbins=84 100 eV - 100 TeV
muIoni: for mu+ 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: 1, fluct: 1, linLossLim= 0.01
===== EM models for the G4Region DefaultRegionForTheWorld ======
Bragg : Emin= 0 eV Emax= 200 keV
BetheBloch : Emin= 200 keV Emax= 1 GeV
MuBetheBloch : Emin= 1 GeV Emax= 100 TeV
muBrems: for mu+ 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
muPairProd: for mu+ 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 1 GeV to 100 TeV
===== EM models for the G4Region DefaultRegionForTheWorld ======
muPairProd : Emin= 0 eV Emax= 100 TeV
CoulombScat: for mu+, integral:1 SubType=1 BuildTable=1
Lambda table from threshold to 100 TeV, 7 bins/decade, spline: 1
ThetaMin(p) < Theta(degree) < 180 pLimit(GeV^1)= 0.139531
===== EM models for the G4Region DefaultRegionForTheWorld ======
eCoulombScattering : Emin= 0 eV Emax= 100 TeV
msc: for mu- SubType= 10
RangeFactor= 0.2, stepLimType: 0, latDisp: 0, polarAngLim(deg)= 180
===== EM models for the G4Region DefaultRegionForTheWorld ======
WentzelVIUni : Emin= 0 eV Emax= 100 TeV Nbins=84 100 eV - 100 TeV
muIoni: for mu- 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: 1, fluct: 1, linLossLim= 0.01
===== EM models for the G4Region DefaultRegionForTheWorld ======
ICRU73QO : Emin= 0 eV Emax= 200 keV
BetheBloch : Emin= 200 keV Emax= 1 GeV
MuBetheBloch : Emin= 1 GeV Emax= 100 TeV
muBrems: for mu- 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
muPairProd: for mu- 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 1 GeV to 100 TeV
===== EM models for the G4Region DefaultRegionForTheWorld ======
muPairProd : Emin= 0 eV Emax= 100 TeV
CoulombScat: for mu-, integral:1 SubType=1 BuildTable=1
Used Lambda table of mu+
ThetaMin(p) < Theta(degree) < 180 pLimit(GeV^1)= 0.139531
===== EM models for the G4Region DefaultRegionForTheWorld ======
eCoulombScattering : Emin= 0 eV Emax= 100 TeV
msc: for pi+ SubType= 10
RangeFactor= 0.2, stepLimType: 0, latDisp: 0
===== EM models for the G4Region DefaultRegionForTheWorld ======
WentzelVIUni : Emin= 0 eV Emax= 100 TeV Nbins=84 100 eV - 100 TeV
hIoni: for pi+ 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: 1, 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
hBrems: for pi+ 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 ======
hBrem : Emin= 0 eV Emax= 100 TeV
hPairProd: for pi+ 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 20x1001 from 1.11656 GeV to 100 TeV
===== EM models for the G4Region DefaultRegionForTheWorld ======
hPairProd : Emin= 0 eV Emax= 100 TeV
CoulombScat: for pi+, integral:1 SubType=1 BuildTable=1
Lambda table from threshold to 100 TeV, 7 bins/decade, spline: 1
ThetaMin(p) < Theta(degree) < 180 pLimit(GeV^1)= 0.139531
===== EM models for the G4Region DefaultRegionForTheWorld ======
eCoulombScattering : Emin= 0 eV Emax= 100 TeV
msc: for pi- SubType= 10
RangeFactor= 0.2, stepLimType: 0, latDisp: 0
===== EM models for the G4Region DefaultRegionForTheWorld ======
WentzelVIUni : Emin= 0 eV Emax= 100 TeV Nbins=84 100 eV - 100 TeV
hIoni: for pi- 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: 1, 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
hBrems: for pi- 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 ======
hBrem : Emin= 0 eV Emax= 100 TeV
hPairProd: for pi- 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 20x1001 from 1.11656 GeV to 100 TeV
===== EM models for the G4Region DefaultRegionForTheWorld ======
hPairProd : Emin= 0 eV Emax= 100 TeV
CoulombScat: for pi-, integral:1 SubType=1 BuildTable=1
Used Lambda table of pi+
ThetaMin(p) < Theta(degree) < 180 pLimit(GeV^1)= 0.139531
===== EM models for the G4Region DefaultRegionForTheWorld ======
eCoulombScattering : Emin= 0 eV Emax= 100 TeV
====================================================================
HADRONIC PROCESSES SUMMARY (verbose level 1)
---------------------------------------------------
Hadronic Processes for neutron
Process: hadElastic
Model: hElasticCHIPS: 0 eV ---> 100 TeV
Cr_sctns: G4NeutronElasticXS: 0 eV ---> 100 TeV
Process: neutronInelastic
Model: FTFP: 3 GeV ---> 100 TeV
Model: BertiniCascade: 0 eV ---> 6 GeV
Cr_sctns: G4NeutronInelasticXS: 0 eV ---> 100 TeV
Process: nCapture
Model: nRadCapture: 0 eV ---> 100 TeV
Cr_sctns: G4NeutronCaptureXS: 0 eV ---> 100 TeV
Process: nKiller
---------------------------------------------------
Hadronic Processes for GenericIon
Process: ionInelastic
Model: Binary Light Ion Cascade: 0 eV /n ---> 6 GeV/n
Model: FTFP: 3 GeV/n ---> 100 TeV/n
Cr_sctns: Glauber-Gribov Nucl-nucl: 0 eV ---> 100 TeV
---------------------------------------------------
Hadronic Processes for He3
Process: hadElastic
Model: hElasticLHEP: 0 eV /n ---> 100 TeV/n
Cr_sctns: Glauber-Gribov Nucl-nucl: 0 eV ---> 100 TeV
Process: He3Inelastic
Model: Binary Light Ion Cascade: 0 eV /n ---> 6 GeV/n
Model: FTFP: 3 GeV/n ---> 100 TeV/n
Cr_sctns: Glauber-Gribov Nucl-nucl: 0 eV ---> 100 TeV
---------------------------------------------------
Hadronic Processes for alpha
Process: hadElastic
Model: hElasticLHEP: 0 eV /n ---> 100 TeV/n
Cr_sctns: Glauber-Gribov Nucl-nucl: 0 eV ---> 100 TeV
Process: alphaInelastic
Model: Binary Light Ion Cascade: 0 eV /n ---> 6 GeV/n
Model: FTFP: 3 GeV/n ---> 100 TeV/n
Cr_sctns: Glauber-Gribov Nucl-nucl: 0 eV ---> 100 TeV
---------------------------------------------------
Hadronic Processes for anti_He3
Process: hadElastic
Model: hElasticLHEP: 0 eV /n ---> 100.1 MeV/n
Model: AntiAElastic: 100 MeV/n ---> 100 TeV/n
Cr_sctns: AntiAGlauber: 0 eV ---> 100 TeV
Process: anti_He3Inelastic
Model: FTFP: 0 eV /n ---> 100 TeV/n
Cr_sctns: AntiAGlauber: 0 eV ---> 100 TeV
Process: hFritiofCaptureAtRest
---------------------------------------------------
Hadronic Processes for anti_alpha
Process: hadElastic
Model: hElasticLHEP: 0 eV /n ---> 100.1 MeV/n
Model: AntiAElastic: 100 MeV/n ---> 100 TeV/n
Cr_sctns: AntiAGlauber: 0 eV ---> 100 TeV
Process: anti_alphaInelastic
Model: FTFP: 0 eV /n ---> 100 TeV/n
Cr_sctns: AntiAGlauber: 0 eV ---> 100 TeV
Process: hFritiofCaptureAtRest
---------------------------------------------------
Hadronic Processes for anti_deuteron
Process: hadElastic
Model: hElasticLHEP: 0 eV /n ---> 100.1 MeV/n
Model: AntiAElastic: 100 MeV/n ---> 100 TeV/n
Cr_sctns: AntiAGlauber: 0 eV ---> 100 TeV
Process: anti_deuteronInelastic
Model: FTFP: 0 eV /n ---> 100 TeV/n
Cr_sctns: AntiAGlauber: 0 eV ---> 100 TeV
Process: hFritiofCaptureAtRest
---------------------------------------------------
Hadronic Processes for anti_neutron
Process: hadElastic
Model: hElasticLHEP: 0 eV ---> 100.1 MeV
Model: AntiAElastic: 100 MeV ---> 100 TeV
Cr_sctns: AntiAGlauber: 0 eV ---> 100 TeV
Process: anti_neutronInelastic
Model: FTFP: 0 eV ---> 100 TeV
Cr_sctns: AntiAGlauber: 0 eV ---> 100 TeV
Process: hFritiofCaptureAtRest
---------------------------------------------------
Hadronic Processes for anti_proton
Process: hadElastic
Model: hElasticLHEP: 0 eV ---> 100.1 MeV
Model: AntiAElastic: 100 MeV ---> 100 TeV
Cr_sctns: AntiAGlauber: 0 eV ---> 100 TeV
Process: anti_protonInelastic
Model: FTFP: 0 eV ---> 100 TeV
Cr_sctns: AntiAGlauber: 0 eV ---> 100 TeV
Process: hFritiofCaptureAtRest
---------------------------------------------------
Hadronic Processes for anti_triton
Process: hadElastic
Model: hElasticLHEP: 0 eV /n ---> 100.1 MeV/n
Model: AntiAElastic: 100 MeV/n ---> 100 TeV/n
Cr_sctns: AntiAGlauber: 0 eV ---> 100 TeV
Process: anti_tritonInelastic
Model: FTFP: 0 eV /n ---> 100 TeV/n
Cr_sctns: AntiAGlauber: 0 eV ---> 100 TeV
Process: hFritiofCaptureAtRest
---------------------------------------------------
Hadronic Processes for deuteron
Process: hadElastic
Model: hElasticLHEP: 0 eV /n ---> 100 TeV/n
Cr_sctns: Glauber-Gribov Nucl-nucl: 0 eV ---> 100 TeV
Process: dInelastic
Model: Binary Light Ion Cascade: 0 eV /n ---> 6 GeV/n
Model: FTFP: 3 GeV/n ---> 100 TeV/n
Cr_sctns: Glauber-Gribov Nucl-nucl: 0 eV ---> 100 TeV
---------------------------------------------------
Hadronic Processes for e+
Process: electronNuclear
Model: G4ElectroVDNuclearModel: 0 eV ---> 1 PeV
Cr_sctns: ElectroNuclearXS: 0 eV ---> 100 TeV
---------------------------------------------------
Hadronic Processes for e-
Process: electronNuclear
Model: G4ElectroVDNuclearModel: 0 eV ---> 1 PeV
Cr_sctns: ElectroNuclearXS: 0 eV ---> 100 TeV
---------------------------------------------------
Hadronic Processes for gamma
Process: photonNuclear
Model: BertiniCascade: 0 eV ---> 6 GeV
Model: TheoFSGenerator: 3 GeV ---> 100 TeV
Cr_sctns: PhotoNuclearXS: 0 eV ---> 100 TeV
---------------------------------------------------
Hadronic Processes for kaon+
Process: hadElastic
Model: hElasticLHEP: 0 eV ---> 100 TeV
Cr_sctns: Glauber-Gribov: 0 eV ---> 100 TeV
Process: kaon+Inelastic
Model: FTFP: 3 GeV ---> 100 TeV
Model: BertiniCascade: 0 eV ---> 6 GeV
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 ---> 100 TeV
Process: kaon-Inelastic
Model: FTFP: 3 GeV ---> 100 TeV
Model: BertiniCascade: 0 eV ---> 6 GeV
Cr_sctns: Glauber-Gribov: 0 eV ---> 100 TeV
Process: hBertiniCaptureAtRest
---------------------------------------------------
Hadronic Processes for lambda
Process: hadElastic
Model: hElasticLHEP: 0 eV ---> 100 TeV
Cr_sctns: Glauber-Gribov: 0 eV ---> 100 TeV
Process: lambdaInelastic
Model: BertiniCascade: 0 eV ---> 6 GeV
Model: FTFP: 3 GeV ---> 100 TeV
Cr_sctns: Glauber-Gribov: 0 eV ---> 100 TeV
---------------------------------------------------
Hadronic Processes for mu+
Process: muonNuclear
Model: G4MuonVDNuclearModel: 0 eV ---> 1 PeV
Cr_sctns: KokoulinMuonNuclearXS: 0 eV ---> 100 TeV
---------------------------------------------------
Hadronic Processes for mu-
Process: muonNuclear
Model: G4MuonVDNuclearModel: 0 eV ---> 1 PeV
Cr_sctns: KokoulinMuonNuclearXS: 0 eV ---> 100 TeV
Process: muMinusCaptureAtRest
---------------------------------------------------
Hadronic Processes for pi+
Process: hadElastic
Model: hElasticGlauber: 0 eV ---> 100 TeV
Cr_sctns: BarashenkovGlauberGribov: 0 eV ---> 100 TeV
Process: pi+Inelastic
Model: FTFP: 3 GeV ---> 100 TeV
Model: BertiniCascade: 0 eV ---> 6 GeV
Cr_sctns: BarashenkovGlauberGribov: 0 eV ---> 100 TeV
---------------------------------------------------
Hadronic Processes for pi-
Process: hadElastic
Model: hElasticGlauber: 0 eV ---> 100 TeV
Cr_sctns: BarashenkovGlauberGribov: 0 eV ---> 100 TeV
Process: pi-Inelastic
Model: FTFP: 3 GeV ---> 100 TeV
Model: BertiniCascade: 0 eV ---> 6 GeV
Cr_sctns: BarashenkovGlauberGribov: 0 eV ---> 100 TeV
Process: hBertiniCaptureAtRest
---------------------------------------------------
Hadronic Processes for proton
Process: hadElastic
Model: hElasticCHIPS: 0 eV ---> 100 TeV
Cr_sctns: BarashenkovGlauberGribov: 0 eV ---> 100 TeV
Process: protonInelastic
Model: FTFP: 3 GeV ---> 100 TeV
Model: BertiniCascade: 0 eV ---> 6 GeV
Cr_sctns: BarashenkovGlauberGribov: 0 eV ---> 100 TeV
---------------------------------------------------
Hadronic Processes for triton
Process: hadElastic
Model: hElasticLHEP: 0 eV /n ---> 100 TeV/n
Cr_sctns: Glauber-Gribov Nucl-nucl: 0 eV ---> 100 TeV
Process: tInelastic
Model: Binary Light Ion Cascade: 0 eV /n ---> 6 GeV/n
Model: FTFP: 3 GeV/n ---> 100 TeV/n
Cr_sctns: Glauber-Gribov Nucl-nucl: 0 eV ---> 100 TeV
================================================================
=======================================================================
====== Pre-compound/De-excitation Physics Parameters ========
=======================================================================
Type of pre-compound inverse x-section 3
Pre-compound model active 1
Pre-compound excitation low energy (MeV) 0.1
Pre-compound excitation high energy (MeV) 30
Type of de-excitation inverse x-section 3
Type of de-excitation factory Evaporation+GEM
Number of de-excitation channels 68
Min excitation energy (keV) 0.01
Min energy per nucleon for multifragmentation (MeV) 2e+05
Limit excitation energy for Fermi BreakUp (MeV) 20
Level density (1/MeV) 0.075
Use simple level density model 1
Use discrete excitation energy of the residual 0
Time limit for long lived isomeres (ns) 1000
Internal e- conversion flag 1
Store e- internal conversion data 0
Electron internal conversion ID 2
Correlated gamma emission flag 0
Max 2J for sampling of angular correlations 10
Upload data before 1st event for Z < 9
=======================================================================
G4VisManager: Using G4TrajectoryDrawByCharge as fallback trajectory model.
See commands in /vis/modeling/trajectories/ for other options.
### Run 0 starts.
... open Root analysis file : B5.root - done
--> Event 0 starts.
>>> Event 0 >>> Simulation truth : proton (-0,0,100000)
Hodoscope 1 has 1 hits.
Hodoscope[7] 4.9870028523976 (nsec)
Hodoscope 2 has 3 hits.
Hodoscope[9] 43.187937103889 (nsec)
Hodoscope[10] 1419.6812158585 (nsec)
Hodoscope[15] 1628.7201376329 (nsec)
Drift Chamber 1 has 7 hits.
Layer[0] : time 6.6712421465156 (nsec) --- local (x,y) 0.0068976087488375, -0.001060304538742
Layer[0] : time 9.3124685854255 (nsec) --- local (x,y) 11.338057615946, -192.32293265863
Layer[0] : time 10.12822655005 (nsec) --- local (x,y) -32.407565787467, -165.38793863646
Layer[1] : time 8.3391360803921 (nsec) --- local (x,y) 0.013210911787839, -0.0046929086614397
Layer[2] : time 10.007030014525 (nsec) --- local (x,y) 0.017790490821106, -0.0035138351901322
Layer[3] : time 11.674923948876 (nsec) --- local (x,y) 0.023425005836559, -0.0011390087980778
Layer[4] : time 13.342817883344 (nsec) --- local (x,y) 0.028071293571896, 0.0008951461009665
Drift Chamber 2 has 5 hits.
Layer[0] : time 34.850339499084 (nsec) --- local (x,y) -147.40696878226, 0.047300058763943
Layer[1] : time 36.521133507245 (nsec) --- local (x,y) -176.9050541531, 0.053707283972597
Layer[2] : time 38.191927700839 (nsec) --- local (x,y) -206.40408252011, 0.060251975739992
Layer[3] : time 39.862722101185 (nsec) --- local (x,y) -235.90416191435, 0.069550578156142
Layer[4] : time 41.533516723828 (nsec) --- local (x,y) -265.4053723571, 0.077470538676864
EM Calorimeter has 66 hits. Total Edep is 1099.3184581149 (MeV)
Hadron Calorimeter has 17 hits. Total Edep is 3949.3101993602 (MeV)
... write Root file : B5.root - done
... close Root file : B5.root - done
### Run 1 starts.
... open Root analysis file : B5.root - done
--> Event 0 starts.
>>> Event 0 >>> Simulation truth : pi+ (-0,0,100000)
Hodoscope 1 has 1 hits.
Hodoscope[7] 4.9867880839839 (nsec)
Hodoscope 2 has 1 hits.
Hodoscope[10] 42.693393245574 (nsec)
Drift Chamber 1 has 5 hits.
Layer[0] : time 6.6709548433254 (nsec) --- local (x,y) -0.013824155103387, 0.016261017805376
Layer[1] : time 8.3387769461329 (nsec) --- local (x,y) -0.029846802908484, 0.024708571280227
Layer[2] : time 10.006599048757 (nsec) --- local (x,y) -0.045364841809758, 0.03027822925463
Layer[3] : time 11.674421151582 (nsec) --- local (x,y) -0.062745747735793, 0.035672637674813
Layer[4] : time 13.342243254523 (nsec) --- local (x,y) -0.081219924189956, 0.040543047254242
Drift Chamber 2 has 5 hits.
Layer[0] : time 34.366098870958 (nsec) --- local (x,y) -82.69418795148, 0.021504706336471
Layer[1] : time 36.03482840894 (nsec) --- local (x,y) -99.190132699387, 0.013029420450852
Layer[2] : time 37.703557930862 (nsec) --- local (x,y) -115.68593028817, 0.0026139701892234
Layer[3] : time 39.372287520732 (nsec) --- local (x,y) -132.18234540633, -0.0081844793609152
Layer[4] : time 41.041017145779 (nsec) --- local (x,y) -148.67907932232, -0.020372551808973
EM Calorimeter has 2 hits. Total Edep is 187.3346008861 (MeV)
Hadron Calorimeter has 3 hits. Total Edep is 54.023046348755 (MeV)
... write Root file : B5.root - done
... close Root file : B5.root - done
### Run 2 starts.
... open Root analysis file : B5.root - done
--> Event 0 starts.
>>> Event 0 >>> Simulation truth : e+ (0,0,100000)
Hodoscope 1 has 1 hits.
Hodoscope[7] 4.9867832233946 (nsec)
Hodoscope 2 has 2 hits.
Hodoscope[8] 43.19738346854 (nsec)
Hodoscope[18] 58.096897387322 (nsec)
Drift Chamber 1 has 5 hits.
Layer[0] : time 6.6709483415296 (nsec) --- local (x,y) 0.0019844168474463, 0.015349347593451
Layer[1] : time 8.3387688192741 (nsec) --- local (x,y) -0.0066863673731819, 0.036561134376806
Layer[2] : time 10.006589297061 (nsec) --- local (x,y) -0.016468249766321, 0.057586358001602
Layer[3] : time 11.674409774888 (nsec) --- local (x,y) -0.022883666512176, 0.080037150346134
Layer[4] : time 13.342230252564 (nsec) --- local (x,y) -0.027086964574016, 0.10207059947303
Drift Chamber 2 has 5 hits.
Layer[0] : time 34.846758094365 (nsec) --- local (x,y) -204.84181039991, 0.3194607488942
Layer[1] : time 36.520163062012 (nsec) --- local (x,y) -245.79289361478, 0.33251044163691
Layer[2] : time 38.193567974244 (nsec) --- local (x,y) -286.74377307783, 0.3462542365349
Layer[3] : time 39.866972960567 (nsec) --- local (x,y) -327.69492473665, 0.35974704663616
Layer[4] : time 41.540378018051 (nsec) --- local (x,y) -368.64633766804, 0.37347086767368
EM Calorimeter has 43 hits. Total Edep is 81951.537358137 (MeV)
Hadron Calorimeter has 7 hits. Total Edep is 107.62415351717 (MeV)
... write Root file : B5.root - done
... close Root file : B5.root - done
### Run 3 starts.
... open Root analysis file : B5.root - done
--> Event 0 starts.
>>> Event 0 >>> Simulation truth : proton (0,0,10000)
Hodoscope 1 has 1 hits.
Hodoscope[7] 5.0086957694034 (nsec)
Hodoscope 2 has 1 hits.
Hodoscope[9] 43.375725555795 (nsec)
Drift Chamber 1 has 5 hits.
Layer[0] : time 6.7002661311666 (nsec) --- local (x,y) 0.033096018686219, 0.18688843051518
Layer[1] : time 8.3754201430863 (nsec) --- local (x,y) 0.017229260134009, 0.32597705161014
Layer[2] : time 10.050574356619 (nsec) --- local (x,y) -0.012687801668717, 0.49414309367773
Layer[3] : time 11.725728747225 (nsec) --- local (x,y) -0.042267835180755, 0.68990964282135
Layer[4] : time 13.400883246472 (nsec) --- local (x,y) -0.099042450724786, 0.89032528331098
Drift Chamber 2 has 5 hits.
Layer[0] : time 35.001759052462 (nsec) --- local (x,y) -147.72932964196, 2.7693915162349
Layer[1] : time 36.679842320631 (nsec) --- local (x,y) -177.30009611045, 2.8980292304352
Layer[2] : time 38.357925737346 (nsec) --- local (x,y) -206.87092874702, 3.0195033049359
Layer[3] : time 40.036006426087 (nsec) --- local (x,y) -236.42739495793, 3.1252078158502
Layer[4] : time 41.714088769682 (nsec) --- local (x,y) -265.99159563292, 3.230712982871
EM Calorimeter has 11 hits. Total Edep is 197.93877510079 (MeV)
Hadron Calorimeter has 9 hits. Total Edep is 496.98796370241 (MeV)
... write Root file : B5.root - done
... close Root file : B5.root - done
### Run 4 starts.
... open Root analysis file : B5.root - done
--> Event 0 starts.
>>> Event 0 >>> Simulation truth : pi+ (0,0,10000)
Hodoscope 1 has 1 hits.
Hodoscope[7] 4.9872691847405 (nsec)
Hodoscope 2 has 1 hits.
Hodoscope[10] 42.69678951869 (nsec)
Drift Chamber 1 has 6 hits.
Layer[0] : time 6.6715985048034 (nsec) --- local (x,y) -0.12165987980389, -0.056105043382324
Layer[0] : time 8.0005090334058 (nsec) --- local (x,y) 120.55872976003, 285.88413428493
Layer[1] : time 8.33958160666 (nsec) --- local (x,y) -0.11564672121573, -0.12090528601761
Layer[2] : time 10.007564715945 (nsec) --- local (x,y) -0.10319680769892, -0.19296060709233
Layer[3] : time 11.675547817511 (nsec) --- local (x,y) -0.082674415844142, -0.22803756688892
Layer[4] : time 13.343530919352 (nsec) --- local (x,y) -0.087043593714109, -0.25942991802217
Drift Chamber 2 has 5 hits.
Layer[0] : time 34.368422995785 (nsec) --- local (x,y) -85.188771314839, -2.166599489153
Layer[1] : time 36.037369058675 (nsec) --- local (x,y) -102.17769868844, -2.333427941274
Layer[2] : time 37.706314188655 (nsec) --- local (x,y) -119.158211758, -2.5104789091031
Layer[3] : time 39.375258173497 (nsec) --- local (x,y) -136.12845485189, -2.7001912197703
Layer[4] : time 41.044202184471 (nsec) --- local (x,y) -153.09890670939, -2.8883861726581
EM Calorimeter has 25 hits. Total Edep is 339.83915317331 (MeV)
Hadron Calorimeter has 12 hits. Total Edep is 450.62866939929 (MeV)
... write Root file : B5.root - done
... close Root file : B5.root - done
### Run 5 starts.
... open Root analysis file : B5.root - done
--> Event 0 starts.
>>> Event 0 >>> Simulation truth : e+ (-0,0,10000)
Hodoscope 1 has 1 hits.
Hodoscope[7] 4.9867832329839 (nsec)
Hodoscope 2 has 1 hits.
Hodoscope[9] 43.185447220732 (nsec)
Drift Chamber 1 has 5 hits.
Layer[0] : time 6.6709483781198 (nsec) --- local (x,y) -0.047105113869766, -0.16615331494088
Layer[1] : time 8.3387688792533 (nsec) --- local (x,y) -0.075279427161224, -0.24812704045366
Layer[2] : time 10.006589374572 (nsec) --- local (x,y) -0.060844784922981, -0.32229016250226
Layer[3] : time 11.674409864122 (nsec) --- local (x,y) -0.046214076277897, -0.38382815602724
Layer[4] : time 13.34223034322 (nsec) --- local (x,y) -0.030322974254476, -0.40820658149983
Drift Chamber 2 has 6 hits.
Layer[0] : time 34.848114703369 (nsec) --- local (x,y) -148.31318103128, -0.90212303575631
Layer[1] : time 36.518850971446 (nsec) --- local (x,y) -177.8918283954, -0.90118168933449
Layer[2] : time 38.189591731055 (nsec) --- local (x,y) -207.49326349267, -0.92081080853881
Layer[2] : time 38.865768347815 (nsec) --- local (x,y) -299.72284120283, 297.21410520337
Layer[3] : time 39.860333948355 (nsec) --- local (x,y) -237.1021000025, -0.92494224337508
Layer[4] : time 41.531078512462 (nsec) --- local (x,y) -266.72283497797, -0.93355706684421
EM Calorimeter has 16 hits. Total Edep is 9346.9047836905 (MeV)
Hadron Calorimeter has 3 hits. Total Edep is 4.7559338815055 (MeV)
... write Root file : B5.root - done
... close Root file : B5.root - done
### Run 6 starts.
... open Root analysis file : B5.root - done
--> Event 0 starts.
>>> Event 0 >>> Simulation truth : proton (-0,0,1000)
Hodoscope 1 has 1 hits.
Hodoscope[7] 6.8393443260594 (nsec)
Hodoscope 2 has 1 hits.
Hodoscope[9] 59.461934532587 (nsec)
Drift Chamber 1 has 5 hits.
Layer[0] : time 9.1539226930808 (nsec) --- local (x,y) 3.7941832893092, -3.3046129880656
Layer[1] : time 11.446356701797 (nsec) --- local (x,y) 6.2152576396404, -4.120839170803
Layer[2] : time 13.73897007013 (nsec) --- local (x,y) 8.4634149125125, -4.8344042451751
Layer[3] : time 16.03177732119 (nsec) --- local (x,y) 10.832439792182, -5.4900866309642
Layer[4] : time 18.324780045602 (nsec) --- local (x,y) 13.031610489928, -5.8262987810453
Drift Chamber 2 has 5 hits.
Layer[0] : time 47.977986468955 (nsec) --- local (x,y) -132.02167305001, -1.6004997539444
Layer[1] : time 50.278879199713 (nsec) --- local (x,y) -164.31761587692, -0.81843279604321
Layer[2] : time 52.579896918515 (nsec) --- local (x,y) -196.31369664739, -0.046196593702274
Layer[3] : time 54.881127434088 (nsec) --- local (x,y) -228.25549557235, 0.43092340145607
Layer[4] : time 57.18264852484 (nsec) --- local (x,y) -260.48106487009, 0.88547993048567
EM Calorimeter has 3 hits. Total Edep is 302.29308252001 (MeV)
Hadron Calorimeter has 0 hits. Total Edep is 0 (MeV)
... write Root file : B5.root - done
... close Root file : B5.root - done
### Run 7 starts.
... open Root analysis file : B5.root - done
--> Event 0 starts.
>>> Event 0 >>> Simulation truth : pi+ (-0,0,1000)
Hodoscope 1 has 1 hits.
Hodoscope[7] 5.0351610299737 (nsec)
Hodoscope 2 has 2 hits.
Hodoscope[10] 43.113804479999 (nsec)
Hodoscope[8] 44.914536037536 (nsec)
Drift Chamber 1 has 26 hits.
Layer[0] : time 6.7357325906443 (nsec) --- local (x,y) 0.0046331466493768, 0.042311217633998
Layer[1] : time 8.4198030583037 (nsec) --- local (x,y) -0.084042105602844, 0.69877484516187
Layer[2] : time 10.103876848009 (nsec) --- local (x,y) -0.058035312424322, 1.4643850730454
Layer[3] : time 11.787952906118 (nsec) --- local (x,y) -0.15021466668723, 2.1821619534719
Layer[3] : time 11.87121998464 (nsec) --- local (x,y) -5.8275620878167, 1.6906287258829
Layer[3] : time 11.872661103922 (nsec) --- local (x,y) -5.8747153512203, 1.7135940865053
Layer[3] : time 11.874058356382 (nsec) --- local (x,y) -5.9324737539357, 1.7253560727912
Layer[3] : time 11.875524441588 (nsec) --- local (x,y) -5.9881180816636, 1.7392082650796
Layer[3] : time 11.883657946125 (nsec) --- local (x,y) -6.2069218428111, 1.7341721747932
Layer[3] : time 11.884454483964 (nsec) --- local (x,y) -6.1810030916114, 1.7147178251818
Layer[3] : time 11.885260799758 (nsec) --- local (x,y) -6.1640089063813, 1.6922129839034
Layer[3] : time 11.886060764419 (nsec) --- local (x,y) -6.1461759807805, 1.6758685814326
Layer[3] : time 11.886874342306 (nsec) --- local (x,y) -6.1336724739439, 1.6706000883796
Layer[3] : time 11.888072725762 (nsec) --- local (x,y) -6.123316403804, 1.6404183128435
Layer[3] : time 11.888937663997 (nsec) --- local (x,y) -6.0912904074639, 1.6280129614526
Layer[3] : time 11.889817650181 (nsec) --- local (x,y) -6.0617546220266, 1.621147766186
Layer[3] : time 11.890675950937 (nsec) --- local (x,y) -6.0291100767991, 1.6271828375848
Layer[3] : time 11.891527370142 (nsec) --- local (x,y) -5.9984410969114, 1.6295700828891
Layer[3] : time 11.901768404954 (nsec) --- local (x,y) -5.7483480978487, 1.6152413959502
Layer[3] : time 11.902216308784 (nsec) --- local (x,y) -5.741363943672, 1.6086024596973
Layer[3] : time 11.902667044647 (nsec) --- local (x,y) -5.7400503107028, 1.5993497703511
Layer[3] : time 11.903117780509 (nsec) --- local (x,y) -5.7376992549757, 1.5902290759823
Layer[3] : time 11.90358740036 (nsec) --- local (x,y) -5.7347735887998, 1.5904664185501
Layer[3] : time 11.904265967443 (nsec) --- local (x,y) -5.7265794880753, 1.5844234488651
Layer[3] : time 11.905140036223 (nsec) --- local (x,y) -5.7045798052809, 1.5927210147308
Layer[4] : time 13.472031501621 (nsec) --- local (x,y) -0.091129934710419, 2.6932173487101
Drift Chamber 2 has 5 hits.
Layer[0] : time 34.704313126692 (nsec) --- local (x,y) -87.95892010678, 6.9380204783481
Layer[1] : time 36.389528485105 (nsec) --- local (x,y) -106.02042126878, 7.2685948029438
Layer[2] : time 38.074738084679 (nsec) --- local (x,y) -124.00924392296, 7.629837385512
Layer[3] : time 39.759920027178 (nsec) --- local (x,y) -141.74377801888, 7.5447210982131
Layer[4] : time 41.4451104607 (nsec) --- local (x,y) -159.50759549486, 7.1887560039802
EM Calorimeter has 2 hits. Total Edep is 167.04622210304 (MeV)
Hadron Calorimeter has 1 hits. Total Edep is 24.334984119735 (MeV)
... write Root file : B5.root - done
... close Root file : B5.root - done
### Run 8 starts.
... open Root analysis file : B5.root - done
--> Event 0 starts.
>>> Event 0 >>> Simulation truth : e+ (0,0,1000)
Hodoscope 1 has 1 hits.
Hodoscope[7] 4.9867894836812 (nsec)
Hodoscope 2 has 1 hits.
Hodoscope[9] 43.214554722763 (nsec)
Drift Chamber 1 has 6 hits.
Layer[0] : time 6.6709740854852 (nsec) --- local (x,y) 0.75139813256988, -0.60177074791516
Layer[0] : time 7.2744084079382 (nsec) --- local (x,y) -93.302569246477, -21.032846065005
Layer[1] : time 8.338812034741 (nsec) --- local (x,y) 1.7207540265746, -2.672336758327
Layer[2] : time 10.006646178304 (nsec) --- local (x,y) 2.8652096924268, -4.3300748556807
Layer[3] : time 11.674476600816 (nsec) --- local (x,y) 3.8719016426619, -5.7320750254706
Layer[4] : time 13.342309426357 (nsec) --- local (x,y) 4.8650098034467, -7.3790681319508
Drift Chamber 2 has 5 hits.
Layer[0] : time 34.872663400216 (nsec) --- local (x,y) -156.86768016729, -26.150638511157
Layer[1] : time 36.544392373992 (nsec) --- local (x,y) -191.10485395828, -27.110850851168
Layer[2] : time 38.216011499467 (nsec) --- local (x,y) -224.85609142266, -28.07954021577
Layer[3] : time 39.887627211341 (nsec) --- local (x,y) -258.60053095112, -28.702414800857
Layer[4] : time 41.559261595824 (nsec) --- local (x,y) -292.42529949164, -29.454527507421
EM Calorimeter has 7 hits. Total Edep is 941.22386557475 (MeV)
Hadron Calorimeter has 0 hits. Total Edep is 0 (MeV)
... write Root file : B5.root - done
... close Root file : B5.root - done
Graphics systems deleted.
Visualization Manager deleting...