Files
geant4/examples/basic/B5/exampleB5.out
T
2021-12-10 16:15:15 +00:00

1393 lines
70 KiB
Plaintext

Environment variable "G4FORCE_RUN_MANAGER_TYPE" enabled with value == Serial. Forcing G4RunManager type...
############################################
!!! WARNING - FPE detection is activated !!!
############################################
################################
!!! G4Backtrace is activated !!!
################################
**************************************************************
Geant4 version Name: geant4-11-00-ref-00 (10-December-2021)
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
Visualization Manager instantiating with verbosity "warnings (3)"...
Visualization Manager initialising...
Registering graphics systems...
You have successfully registered the following graphics systems.
Registered graphics systems are:
ASCIITree (ATree)
DAWNFILE (DAWNFILE)
G4HepRepFile (HepRepFile)
RayTracer (RayTracer)
VRML2FILE (VRML2FILE)
gMocrenFile (gMocrenFile)
OpenGLImmediateQt (OGLIQt, OGLI)
OpenGLStoredQt (OGLSQt, OGL, OGLS)
OpenGLImmediateXm (OGLIXm, OGLIQt_FALLBACK)
OpenGLStoredXm (OGLSXm, OGLSQt_FALLBACK)
OpenGLImmediateX (OGLIX, OGLIQt_FALLBACK, OGLIXm_FALLBACK)
OpenGLStoredX (OGLSX, OGLSQt_FALLBACK, 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 models:
None
Registered filter factories:
attributeFilter
chargeFilter
originVolumeFilter
particleFilter
encounteredVolumeFilter
Registered filters:
None
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:0 (G4Tubs) ... OK!
Checking overlaps for volume firstArmPhysical:0 (G4Box) ... OK!
Checking overlaps for volume fSecondArmPhys:0 (G4Box) ... OK!
Checking overlaps for volume hodoscope1Physical:0 (G4Box) ... OK!
Checking overlaps for volume hodoscope1Physical:1 (G4Box) ... OK!
Checking overlaps for volume hodoscope1Physical:2 (G4Box) ... OK!
Checking overlaps for volume hodoscope1Physical:3 (G4Box) ... OK!
Checking overlaps for volume hodoscope1Physical:4 (G4Box) ... OK!
Checking overlaps for volume hodoscope1Physical:5 (G4Box) ... OK!
Checking overlaps for volume hodoscope1Physical:6 (G4Box) ... OK!
Checking overlaps for volume hodoscope1Physical:7 (G4Box) ... OK!
Checking overlaps for volume hodoscope1Physical:8 (G4Box) ... OK!
Checking overlaps for volume hodoscope1Physical:9 (G4Box) ... OK!
Checking overlaps for volume hodoscope1Physical:10 (G4Box) ... OK!
Checking overlaps for volume hodoscope1Physical:11 (G4Box) ... OK!
Checking overlaps for volume hodoscope1Physical:12 (G4Box) ... OK!
Checking overlaps for volume hodoscope1Physical:13 (G4Box) ... OK!
Checking overlaps for volume hodoscope1Physical:14 (G4Box) ... OK!
Checking overlaps for volume chamber1Physical:0 (G4Box) ... OK!
Checking overlaps for volume chamber1Physical:1 (G4Box) ... OK!
Checking overlaps for volume chamber1Physical:2 (G4Box) ... OK!
Checking overlaps for volume chamber1Physical:3 (G4Box) ... OK!
Checking overlaps for volume chamber1Physical:4 (G4Box) ... OK!
Checking overlaps for volume wirePlane1Physical:0 (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical:0 (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical:1 (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical:2 (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical:3 (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical:4 (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical:5 (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical:6 (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical:7 (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical:8 (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical:9 (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical:10 (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical:11 (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical:12 (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical:13 (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical:14 (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical:15 (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical:16 (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical:17 (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical:18 (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical:19 (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical:20 (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical:21 (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical:22 (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical:23 (G4Box) ... OK!
Checking overlaps for volume hodoscope2Physical:24 (G4Box) ... OK!
Checking overlaps for volume chamber2Physical:0 (G4Box) ... OK!
Checking overlaps for volume chamber2Physical:1 (G4Box) ... OK!
Checking overlaps for volume chamber2Physical:2 (G4Box) ... OK!
Checking overlaps for volume chamber2Physical:3 (G4Box) ... OK!
Checking overlaps for volume chamber2Physical:4 (G4Box) ... OK!
Checking overlaps for volume wirePlane2Physical:0 (G4Box) ... OK!
Checking overlaps for volume EMcalorimeterPhysical:0 (G4Box) ... OK!
Checking overlaps for volume HadCalorimeterPhysical:0 (G4Box) ... OK!
Checking overlaps for volume HadCalScintiPhysical:0 (G4Box) ... OK!
hInelastic FTFP_BERT : 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
=======================================================================
====== Electromagnetic Physics Parameters ========
=======================================================================
LPM effect enabled 1
Enable creation and use of sampling tables 0
Apply cuts on all EM processes 0
Use general process 0
Enable linear polarisation for gamma 0
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 livermore
=======================================================================
====== 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
Fluctuations of dE/dx are enabled 1
Use ICRU90 data 0
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
=======================================================================
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
===== EM models for the G4Region DefaultRegionForTheWorld ======
UrbanMsc : Emin= 0 eV Emax= 100 MeV Nbins=42 100 eV - 100 MeV
StepLim=UseSafety Rfact=0.04 Gfact=2.5 Sfact=0.6 DispFlag:1 Skin=1 Llim=1 mm
WentzelVIUni : Emin= 100 MeV Emax= 100 TeV Nbins=42 100 MeV - 100 TeV
StepLim=UseSafety Rfact=0.04 Gfact=2.5 Sfact=0.6 DispFlag:1 Skin=1 Llim=1 mm
eIoni: for e- XStype:1 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- 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
CoulombScat: for e- XStype:3 SubType=1 BuildTable=1
Lambda table from 100 MeV to 100 TeV, 7 bins/decade, spline: 0
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
===== EM models for the G4Region DefaultRegionForTheWorld ======
UrbanMsc : Emin= 0 eV Emax= 100 MeV Nbins=42 100 eV - 100 MeV
StepLim=UseSafety Rfact=0.04 Gfact=2.5 Sfact=0.6 DispFlag:1 Skin=1 Llim=1 mm
WentzelVIUni : Emin= 100 MeV Emax= 100 TeV Nbins=42 100 MeV - 100 TeV
StepLim=UseSafety Rfact=0.04 Gfact=2.5 Sfact=0.6 DispFlag:1 Skin=1 Llim=1 mm
eIoni: for e+ XStype:1 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+ 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
CoulombScat: for e+ XStype:3 SubType=1 BuildTable=1
Lambda table from 100 MeV to 100 TeV, 7 bins/decade, spline: 0
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
===== EM models for the G4Region DefaultRegionForTheWorld ======
WentzelVIUni : 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:1 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 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: 0
===== EM models for the G4Region DefaultRegionForTheWorld ======
hBrem : Emin= 0 eV Emax= 100 TeV ModifiedMephi
hPairProd: for proton 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: 0
Sampling table 17x1001 from 7.50618 GeV to 100 TeV
===== EM models for the G4Region DefaultRegionForTheWorld ======
hPairProd : Emin= 0 eV Emax= 100 TeV ModifiedMephi
CoulombScat: for proton XStype:3 SubType=1 BuildTable=1
Lambda table from threshold to 100 TeV, 7 bins/decade, spline: 0
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
===== 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
ionIoni: for GenericIon XStype:1 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
===== 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
ionIoni: for alpha XStype:1 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
===== EM models for the G4Region DefaultRegionForTheWorld ======
WentzelVIUni : 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:1 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 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: 0
===== EM models for the G4Region DefaultRegionForTheWorld ======
hBrem : Emin= 0 eV Emax= 100 TeV ModifiedMephi
hPairProd: for anti_proton 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: 0
Sampling table 17x1001 from 7.50618 GeV to 100 TeV
===== EM models for the G4Region DefaultRegionForTheWorld ======
hPairProd : Emin= 0 eV Emax= 100 TeV ModifiedMephi
CoulombScat: for anti_proton XStype:3 SubType=1 BuildTable=1
Lambda table from threshold to 100 TeV, 7 bins/decade, spline: 0
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
===== EM models for the G4Region DefaultRegionForTheWorld ======
WentzelVIUni : 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:1 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+ 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: 0
===== EM models for the G4Region DefaultRegionForTheWorld ======
hBrem : Emin= 0 eV Emax= 100 TeV ModifiedMephi
hPairProd: for kaon+ 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: 0
Sampling table 18x1001 from 3.94942 GeV to 100 TeV
===== EM models for the G4Region DefaultRegionForTheWorld ======
hPairProd : Emin= 0 eV Emax= 100 TeV ModifiedMephi
CoulombScat: for kaon+ XStype:3 SubType=1 BuildTable=1
Lambda table from threshold to 100 TeV, 7 bins/decade, spline: 0
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
===== EM models for the G4Region DefaultRegionForTheWorld ======
WentzelVIUni : 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:1 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- 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: 0
===== EM models for the G4Region DefaultRegionForTheWorld ======
hBrem : Emin= 0 eV Emax= 100 TeV ModifiedMephi
hPairProd: for kaon- 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: 0
Sampling table 18x1001 from 3.94942 GeV to 100 TeV
===== EM models for the G4Region DefaultRegionForTheWorld ======
hPairProd : Emin= 0 eV Emax= 100 TeV ModifiedMephi
CoulombScat: for kaon- XStype:3 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
===== EM models for the G4Region DefaultRegionForTheWorld ======
WentzelVIUni : 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:1 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+ 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: 0
===== 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: 0
Sampling table 21x1001 from 1 GeV to 100 TeV
===== EM models for the G4Region DefaultRegionForTheWorld ======
muPairProd : Emin= 0 eV Emax= 100 TeV ModifiedMephi
CoulombScat: for mu+ XStype:3 SubType=1 BuildTable=1
Lambda table from threshold to 100 TeV, 7 bins/decade, spline: 0
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
===== EM models for the G4Region DefaultRegionForTheWorld ======
WentzelVIUni : 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:1 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- 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: 0
===== 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: 0
Sampling table 21x1001 from 1 GeV to 100 TeV
===== EM models for the G4Region DefaultRegionForTheWorld ======
muPairProd : Emin= 0 eV Emax= 100 TeV ModifiedMephi
CoulombScat: for mu- XStype:3 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
===== EM models for the G4Region DefaultRegionForTheWorld ======
WentzelVIUni : 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:1 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+ 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: 0
===== EM models for the G4Region DefaultRegionForTheWorld ======
hBrem : Emin= 0 eV Emax= 100 TeV ModifiedMephi
hPairProd: for pi+ 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: 0
Sampling table 20x1001 from 1.11656 GeV to 100 TeV
===== EM models for the G4Region DefaultRegionForTheWorld ======
hPairProd : Emin= 0 eV Emax= 100 TeV ModifiedMephi
CoulombScat: for pi+ XStype:3 SubType=1 BuildTable=1
Lambda table from threshold to 100 TeV, 7 bins/decade, spline: 0
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
===== EM models for the G4Region DefaultRegionForTheWorld ======
WentzelVIUni : 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:1 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- 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: 0
===== EM models for the G4Region DefaultRegionForTheWorld ======
hBrem : Emin= 0 eV Emax= 100 TeV ModifiedMephi
hPairProd: for pi- 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: 0
Sampling table 20x1001 from 1.11656 GeV to 100 TeV
===== EM models for the G4Region DefaultRegionForTheWorld ======
hPairProd : Emin= 0 eV Emax= 100 TeV ModifiedMephi
CoulombScat: for pi- XStype:3 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 B-
Process: hadElastic
Model: hElasticLHEP: 0 eV ---> 100 TeV
Cr_sctns: Glauber-Gribov: 0 eV ---> 100 TeV
Process: B-Inelastic
Model: FTFP: 0 eV ---> 100 TeV
Cr_sctns: Glauber-Gribov: 0 eV ---> 100 TeV
---------------------------------------------------
Hadronic Processes for D-
Process: hadElastic
Model: hElasticLHEP: 0 eV ---> 100 TeV
Cr_sctns: Glauber-Gribov: 0 eV ---> 100 TeV
Process: D-Inelastic
Model: FTFP: 0 eV ---> 100 TeV
Cr_sctns: Glauber-Gribov: 0 eV ---> 100 TeV
---------------------------------------------------
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 ---> 25.6 PeV
---------------------------------------------------
Hadronic Processes for He3
Process: hadElastic
Model: hElasticLHEP: 0 eV /n ---> 100 TeV/n
Cr_sctns: Glauber-Gribov Nucl-nucl: 0 eV ---> 25.6 PeV
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 ---> 25.6 PeV
---------------------------------------------------
Hadronic Processes for alpha
Process: hadElastic
Model: hElasticLHEP: 0 eV /n ---> 100 TeV/n
Cr_sctns: Glauber-Gribov Nucl-nucl: 0 eV ---> 25.6 PeV
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 ---> 25.6 PeV
---------------------------------------------------
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 ---> 25.6 PeV
Process: anti_He3Inelastic
Model: FTFP: 0 eV /n ---> 100 TeV/n
Cr_sctns: AntiAGlauber: 0 eV ---> 25.6 PeV
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 ---> 25.6 PeV
Process: anti_alphaInelastic
Model: FTFP: 0 eV /n ---> 100 TeV/n
Cr_sctns: AntiAGlauber: 0 eV ---> 25.6 PeV
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 ---> 25.6 PeV
Process: anti_deuteronInelastic
Model: FTFP: 0 eV /n ---> 100 TeV/n
Cr_sctns: AntiAGlauber: 0 eV ---> 25.6 PeV
Process: hFritiofCaptureAtRest
---------------------------------------------------
Hadronic Processes for anti_lambda
Process: hadElastic
Model: hElasticLHEP: 0 eV ---> 100 TeV
Cr_sctns: Glauber-Gribov: 0 eV ---> 100 TeV
Process: anti_lambdaInelastic
Model: FTFP: 0 eV ---> 100 TeV
Cr_sctns: Glauber-Gribov: 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 ---> 25.6 PeV
Process: anti_neutronInelastic
Model: FTFP: 0 eV ---> 100 TeV
Cr_sctns: AntiAGlauber: 0 eV ---> 25.6 PeV
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 ---> 25.6 PeV
Process: anti_protonInelastic
Model: FTFP: 0 eV ---> 100 TeV
Cr_sctns: AntiAGlauber: 0 eV ---> 25.6 PeV
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 ---> 25.6 PeV
Process: anti_tritonInelastic
Model: FTFP: 0 eV /n ---> 100 TeV/n
Cr_sctns: AntiAGlauber: 0 eV ---> 25.6 PeV
Process: hFritiofCaptureAtRest
---------------------------------------------------
Hadronic Processes for deuteron
Process: hadElastic
Model: hElasticLHEP: 0 eV /n ---> 100 TeV/n
Cr_sctns: Glauber-Gribov Nucl-nucl: 0 eV ---> 25.6 PeV
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 ---> 25.6 PeV
---------------------------------------------------
Hadronic Processes for e+
Process: positronNuclear
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: GammaNPreco: 0 eV ---> 200 MeV
Model: BertiniCascade: 199 MeV ---> 6 GeV
Model: TheoFSGenerator: 3 GeV ---> 100 TeV
Cr_sctns: GammaNuclearXS: 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: FTFP: 3 GeV ---> 100 TeV
Model: BertiniCascade: 0 eV ---> 6 GeV
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 sigma-
Process: hadElastic
Model: hElasticLHEP: 0 eV ---> 100 TeV
Cr_sctns: Glauber-Gribov: 0 eV ---> 100 TeV
Process: sigma-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 triton
Process: hadElastic
Model: hElasticLHEP: 0 eV /n ---> 100 TeV/n
Cr_sctns: Glauber-Gribov Nucl-nucl: 0 eV ---> 25.6 PeV
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 ---> 25.6 PeV
================================================================
=======================================================================
====== 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) 1
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
=======================================================================
G4VisManager: Using G4TrajectoryDrawByCharge as fallback trajectory model.
See commands in /vis/modeling/trajectories/ for other options.
### Run 0 starts.
-------- WWWW ------- G4Exception-START -------- WWWW -------
*** G4Exception : Analysis_W001
issued by : G4RootNtupleFileManager::SetNtupleMergingMode
Merging ntuples is not applicable in sequential application.
Setting was ignored.
*** This is just a warning message. ***
-------- WWWW -------- G4Exception-END --------- WWWW -------
... set ntuple merging row mode : row-wise - done
... create file : B5.root - done
... open analysis file : B5.root - done
... create file : B5ntuple.root - done
... open analysis file : B5.root - done
--> Event 0 starts.
>>> Event 0 >>> Simulation truth : proton (0,0,100000)
Hodoscope 1 has 1 hits.
Hodoscope[7] 4.987002725936 (nsec)
Hodoscope 2 has 0 hits.
Drift Chamber 1 has 63 hits.
Layer[0] : time 6.7557786014511 (nsec) --- local (x,y) 70.206007799582, -92.279363716733
Layer[0] : time 6.8087197282096 (nsec) --- local (x,y) -118.15919093946, -87.697239109756
Layer[0] : time 7.2162712838945 (nsec) --- local (x,y) -32.021365175343, 30.103891303509
Layer[0] : time 6.8734822803662 (nsec) --- local (x,y) -204.0506899287, 4.0073902600573
Layer[0] : time 7.2661198705468 (nsec) --- local (x,y) 57.652348645256, 88.751479391552
Layer[0] : time 6.6733252384026 (nsec) --- local (x,y) -12.815372855368, -21.594993406711
Layer[0] : time 6.6877503096417 (nsec) --- local (x,y) -13.142025251057, -21.836450382168
Layer[0] : time 6.6886461679672 (nsec) --- local (x,y) -13.139699035099, -21.83991539311
Layer[0] : time 6.6895475711405 (nsec) --- local (x,y) -13.148151317107, -21.847021112694
Layer[0] : time 6.6905482412803 (nsec) --- local (x,y) -13.167946644849, -21.86621501958
Layer[0] : time 6.6919623059423 (nsec) --- local (x,y) -13.212008493988, -21.875306379246
Layer[0] : time 6.6929188743704 (nsec) --- local (x,y) -13.231314749559, -21.876567087535
Layer[0] : time 6.6938806589061 (nsec) --- local (x,y) -13.250499355449, -21.906515835404
Layer[0] : time 6.6948566134766 (nsec) --- local (x,y) -13.239175995798, -21.938920752145
Layer[0] : time 6.6958693786711 (nsec) --- local (x,y) -13.210614053592, -21.949564800274
Layer[0] : time 6.6968892908029 (nsec) --- local (x,y) -13.200635027843, -21.979783901668
Layer[0] : time 6.6979698440192 (nsec) --- local (x,y) -13.230781897977, -21.998758999758
Layer[0] : time 6.6991091590249 (nsec) --- local (x,y) -13.269133529562, -21.995091122609
Layer[0] : time 6.7001432380385 (nsec) --- local (x,y) -15.52374872817, 68.799941000473
Layer[0] : time 6.8252598695636 (nsec) --- local (x,y) -38.697108821483, 196.22578458392
Layer[0] : time 6.7053195586928 (nsec) --- local (x,y) -86.653345693123, 49.242808439072
Layer[0] : time 7.1857534928123 (nsec) --- local (x,y) 351.97438535531, 201.90139895508
Layer[0] : time 6.7037485245226 (nsec) --- local (x,y) 1.2840488023166, -63.19754745788
Layer[0] : time 6.6808750961886 (nsec) --- local (x,y) 33.977503736699, -41.241438311708
Layer[0] : time 6.7269679062726 (nsec) --- local (x,y) -50.333689362339, -84.476674728467
Layer[0] : time 6.6737324070811 (nsec) --- local (x,y) -26.334945650699, 0.24415222386594
Layer[1] : time 8.5076205098544 (nsec) --- local (x,y) 139.87786060476, -183.94472006216
Layer[1] : time 8.613213867648 (nsec) --- local (x,y) -235.3325487788, -175.08654640165
Layer[1] : time 9.4256827762124 (nsec) --- local (x,y) -63.833624515698, 60.059867503512
Layer[1] : time 8.7536972851613 (nsec) --- local (x,y) -414.40298904527, -2.6715486443324
Layer[1] : time 8.3432897156235 (nsec) --- local (x,y) -25.551182903146, -43.046708723902
Layer[1] : time 8.3967343965363 (nsec) --- local (x,y) -30.9260516606, 137.11995934584
Layer[1] : time 8.407052002591 (nsec) --- local (x,y) -172.69411143762, 98.162686221254
Layer[1] : time 8.4038823600338 (nsec) --- local (x,y) 2.3568815499483, -125.85087200332
Layer[1] : time 8.3583255052146 (nsec) --- local (x,y) 67.717077366538, -82.158972961754
Layer[1] : time 8.4502847068754 (nsec) --- local (x,y) -100.23612728175, -168.55159405051
Layer[1] : time 8.3440987905831 (nsec) --- local (x,y) -52.485776772069, 0.5048453760266
Layer[2] : time 10.259448929408 (nsec) --- local (x,y) 209.55439259882, -275.58031371471
Layer[2] : time 10.417499220063 (nsec) --- local (x,y) -352.33512513392, -262.30332262699
Layer[2] : time 11.635217174803 (nsec) --- local (x,y) -95.647674280715, 90.051229030098
Layer[2] : time 10.65960036956 (nsec) --- local (x,y) -641.97431220783, -35.17659608887
Layer[2] : time 10.013257128995 (nsec) --- local (x,y) -38.302739628727, -64.509603018052
Layer[2] : time 10.093332294557 (nsec) --- local (x,y) -46.325696051684, 205.45466121545
Layer[2] : time 10.108806793371 (nsec) --- local (x,y) -258.80931198272, 147.0210096189
Layer[2] : time 10.104163581979 (nsec) --- local (x,y) 3.3234984095156, -188.84687698934
Layer[2] : time 10.035781250044 (nsec) --- local (x,y) 101.49590351274, -123.06374680674
Layer[2] : time 10.173613579392 (nsec) --- local (x,y) -150.32480721249, -252.52844201923
Layer[2] : time 10.014464247851 (nsec) --- local (x,y) -78.630954778718, 0.79340782593829
Layer[3] : time 13.844875449559 (nsec) --- local (x,y) -127.47914734395, 120.04700020714
Layer[3] : time 12.565372716366 (nsec) --- local (x,y) -869.58035836367, -66.568831873435
Layer[3] : time 11.683222019722 (nsec) --- local (x,y) -51.03847628837, -85.964241011507
Layer[3] : time 11.789922783323 (nsec) --- local (x,y) -61.656235661582, 273.78120965963
Layer[3] : time 12.640882658231 (nsec) --- local (x,y) -483.86592881784, -19.459212887817
Layer[3] : time 11.810564398719 (nsec) --- local (x,y) -344.94339075829, 195.85464307394
Layer[3] : time 11.804419690479 (nsec) --- local (x,y) 4.3122755539306, -251.77342734213
Layer[3] : time 11.713240189608 (nsec) --- local (x,y) 135.29235431495, -163.96571656939
Layer[3] : time 11.684832080629 (nsec) --- local (x,y) -104.78966501455, 1.0865856468959
Layer[4] : time 16.054685923075 (nsec) --- local (x,y) -159.32198739018, 150.05996184141
Layer[4] : time 13.353185418094 (nsec) --- local (x,y) -63.759385561588, -107.41722921112
Layer[4] : time 14.917091184666 (nsec) --- local (x,y) -844.73036379834, -164.55174322388
Layer[4] : time 13.512311714229 (nsec) --- local (x,y) -431.02172982442, 244.75402133754
Layer[4] : time 13.39068871051 (nsec) --- local (x,y) 169.07403229293, -204.84146029795
Layer[4] : time 13.35520864566 (nsec) --- local (x,y) -130.99829932563, 1.3892465145517
Drift Chamber 2 has 0 hits.
EM Calorimeter has 4 hits. Total Edep is 1474.9397262416 (MeV)
Hadron Calorimeter has 1 hits. Total Edep is 0.098560309853969 (MeV)
... write file : B5.root - done
... write file : B5ntuple.root - done
... close file : B5.root - done
... close file : B5ntuple.root - done
0 events have been kept for refreshing and/or reviewing.
"/vis/reviewKeptEvents" to review them one by one.
"/vis/enable", then "/vis/viewer/flush" or "/vis/viewer/rebuild" to see them accumulated.
### Run 1 starts.
... create file : B5.root - done
... open analysis file : B5.root - done
... create file : B5ntuple.root - done
... open analysis file : B5.root - done
--> Event 0 starts.
>>> Event 0 >>> Simulation truth : pi+ (0,0,100000)
Hodoscope 1 has 1 hits.
Hodoscope[7] 4.9867880803675 (nsec)
Hodoscope 2 has 3 hits.
Hodoscope[10] 42.693618216939 (nsec)
Hodoscope[13] 358.38560824511 (nsec)
Hodoscope[0] 283.11622831717 (nsec)
Drift Chamber 1 has 5 hits.
Layer[0] : time 6.6709548377118 (nsec) --- local (x,y) -0.0032635029937747, -0.010667921706549
Layer[1] : time 8.3387769384352 (nsec) --- local (x,y) -0.0084227244151683, -0.01709424044444
Layer[2] : time 10.006599039224 (nsec) --- local (x,y) -0.015158094572203, -0.023400472036744
Layer[3] : time 11.674421140022 (nsec) --- local (x,y) -0.022528695889701, -0.029157518351191
Layer[4] : time 13.342243241045 (nsec) --- local (x,y) -0.033429553356734, -0.034927385208282
Drift Chamber 2 has 6 hits.
Layer[0] : time 34.366314485641 (nsec) --- local (x,y) -82.718349731738, -0.030054379428449
Layer[1] : time 36.035045866101 (nsec) --- local (x,y) -99.231049680789, -0.024012311562531
Layer[2] : time 37.70377716007 (nsec) --- local (x,y) -115.74296211149, -0.013917643114638
Layer[3] : time 39.372508392958 (nsec) --- local (x,y) -132.25432058226, -0.005453708672134
Layer[4] : time 41.041239763219 (nsec) --- local (x,y) -148.76692672107, 0.0028549145554235
Layer[4] : time 62.993827716514 (nsec) --- local (x,y) -1422.4309041996, -257.66765499105
EM Calorimeter has 73 hits. Total Edep is 12980.257597808 (MeV)
Hadron Calorimeter has 18 hits. Total Edep is 3559.4369365923 (MeV)
... write file : B5.root - done
... write file : B5ntuple.root - done
... close file : B5.root - done
... close file : B5ntuple.root - done
0 events have been kept for refreshing and/or reviewing.
"/vis/reviewKeptEvents" to review them one by one.
"/vis/enable", then "/vis/viewer/flush" or "/vis/viewer/rebuild" to see them accumulated.
### Run 2 starts.
... create file : B5.root - done
... open analysis file : B5.root - done
... create file : B5ntuple.root - done
... open analysis file : B5.root - done
--> Event 0 starts.
>>> Event 0 >>> Simulation truth : e+ (0,0,100000)
Hodoscope 1 has 1 hits.
Hodoscope[7] 4.986783223279 (nsec)
Hodoscope 2 has 3 hits.
Hodoscope[9] 43.186141934039 (nsec)
Hodoscope[16] 56.587508165145 (nsec)
Hodoscope[7] 55.893346895592 (nsec)
Drift Chamber 1 has 6 hits.
Layer[0] : time 6.6709483404543 (nsec) --- local (x,y) 0.0061718026648383, -0.015568897173451
Layer[1] : time 8.3387688169536 (nsec) --- local (x,y) 0.0085610072761597, -0.027667102631794
Layer[2] : time 10.006589293255 (nsec) --- local (x,y) 0.012897954895822, -0.036247433549594
Layer[3] : time 11.674409769726 (nsec) --- local (x,y) 0.024134435075224, -0.039792069667104
Layer[3] : time 12.406887267431 (nsec) --- local (x,y) -198.41011484338, -53.159299016341
Layer[4] : time 13.342230246247 (nsec) --- local (x,y) 0.036704522180506, -0.039220374509927
Drift Chamber 2 has 6 hits.
Layer[0] : time 34.848893271681 (nsec) --- local (x,y) -147.41163101389, 0.022809387626289
Layer[1] : time 36.519617088754 (nsec) --- local (x,y) -176.9270054008, 0.028100612285775
Layer[2] : time 38.190341812153 (nsec) --- local (x,y) -206.44699067831, 0.030528710696459
Layer[3] : time 39.861066601675 (nsec) --- local (x,y) -235.96731230587, 0.033009034944669
Layer[4] : time 41.531791149301 (nsec) --- local (x,y) -265.48640340012, 0.036173126924294
Layer[4] : time 58.507148310721 (nsec) --- local (x,y) -1195.0286293212, 292.39115804752
EM Calorimeter has 50 hits. Total Edep is 88259.231556983 (MeV)
Hadron Calorimeter has 11 hits. Total Edep is 76.708741161887 (MeV)
... write file : B5.root - done
... write file : B5ntuple.root - done
... close file : B5.root - done
... close file : B5ntuple.root - done
0 events have been kept for refreshing and/or reviewing.
"/vis/reviewKeptEvents" to review them one by one.
"/vis/enable", then "/vis/viewer/flush" or "/vis/viewer/rebuild" to see them accumulated.
### Run 3 starts.
... create file : B5.root - done
... open analysis file : B5.root - done
... create file : B5ntuple.root - done
... open analysis file : B5.root - done
--> Event 0 starts.
>>> Event 0 >>> Simulation truth : proton (-0,0,10000)
Hodoscope 1 has 1 hits.
Hodoscope[7] 5.0086863995438 (nsec)
Hodoscope 2 has 2 hits.
Hodoscope[9] 43.37533495566 (nsec)
Hodoscope[2] 4643.5331855704 (nsec)
Drift Chamber 1 has 5 hits.
Layer[0] : time 6.7002517626799 (nsec) --- local (x,y) -0.022349248227811, -0.29420022567928
Layer[1] : time 8.3754009056829 (nsec) --- local (x,y) -0.085863523556728, -0.49394313405456
Layer[2] : time 10.050550143476 (nsec) --- local (x,y) -0.16570344625007, -0.68700569397219
Layer[3] : time 11.725699488182 (nsec) --- local (x,y) -0.24167744850375, -0.87345454665286
Layer[4] : time 13.40084890562 (nsec) --- local (x,y) -0.30684447378443, -1.0276411114737
Drift Chamber 2 has 5 hits.
Layer[0] : time 35.001376603877 (nsec) --- local (x,y) -147.80110256265, -3.1253712145765
Layer[1] : time 36.679457538461 (nsec) --- local (x,y) -177.38379927132, -3.3345298820139
Layer[2] : time 38.357536355627 (nsec) --- local (x,y) -206.9549433519, -3.5649214682564
Layer[3] : time 40.035615774397 (nsec) --- local (x,y) -236.52833240062, -3.796215919941
Layer[4] : time 41.713699094782 (nsec) --- local (x,y) -266.12077349803, -4.0363227432172
EM Calorimeter has 25 hits. Total Edep is 5641.4065204872 (MeV)
Hadron Calorimeter has 11 hits. Total Edep is 228.12707640749 (MeV)
... write file : B5.root - done
... write file : B5ntuple.root - done
... close file : B5.root - done
... close file : B5ntuple.root - done
0 events have been kept for refreshing and/or reviewing.
"/vis/reviewKeptEvents" to review them one by one.
"/vis/enable", then "/vis/viewer/flush" or "/vis/viewer/rebuild" to see them accumulated.
### Run 4 starts.
... create file : B5.root - done
... open analysis file : B5.root - done
... create file : B5ntuple.root - done
... open analysis file : B5.root - done
--> Event 0 starts.
>>> Event 0 >>> Simulation truth : pi+ (0,0,10000)
Hodoscope 1 has 1 hits.
Hodoscope[7] 4.9872689660597 (nsec)
Hodoscope 2 has 1 hits.
Hodoscope[10] 42.705277984622 (nsec)
Drift Chamber 1 has 5 hits.
Layer[0] : time 6.671598322667 (nsec) --- local (x,y) 0.22933462973613, -0.2138934147804
Layer[1] : time 8.3395815247574 (nsec) --- local (x,y) 0.39064756761327, -0.39591814995509
Layer[2] : time 10.007564763238 (nsec) --- local (x,y) 0.56815760217874, -0.58619586551157
Layer[3] : time 11.675548014985 (nsec) --- local (x,y) 0.73371446090579, -0.79297739838818
Layer[4] : time 13.343531289527 (nsec) --- local (x,y) 0.89101504693309, -1.0199605747907
Drift Chamber 2 has 8 hits.
Layer[0] : time 34.37680279851 (nsec) --- local (x,y) -83.287643653354, -4.065683371671
Layer[1] : time 36.045767922697 (nsec) --- local (x,y) -100.44577805965, -4.3121962685794
Layer[1] : time 36.355493166073 (nsec) --- local (x,y) 95.085792824427, -73.138446253837
Layer[2] : time 37.714733961014 (nsec) --- local (x,y) -117.61179870902, -4.5555918806547
Layer[2] : time 39.110706899366 (nsec) --- local (x,y) 630.84093470745, -100.52962316865
Layer[3] : time 39.383700299043 (nsec) --- local (x,y) -134.7807435269, -4.7739475879862
Layer[3] : time 43.200015812599 (nsec) --- local (x,y) 1451.8111294961, 272.82110872522
Layer[4] : time 41.052665532951 (nsec) --- local (x,y) -151.93982421198, -5.0060919196642
EM Calorimeter has 6 hits. Total Edep is 204.36366591634 (MeV)
Hadron Calorimeter has 8 hits. Total Edep is 351.72212415738 (MeV)
... write file : B5.root - done
... write file : B5ntuple.root - done
... close file : B5.root - done
... close file : B5ntuple.root - done
0 events have been kept for refreshing and/or reviewing.
"/vis/reviewKeptEvents" to review them one by one.
"/vis/enable", then "/vis/viewer/flush" or "/vis/viewer/rebuild" to see them accumulated.
### Run 5 starts.
... create file : B5.root - done
... open analysis file : B5.root - done
... create file : B5ntuple.root - done
... open analysis file : B5.root - done
--> Event 0 starts.
>>> Event 0 >>> Simulation truth : e+ (0,0,10000)
Hodoscope 1 has 1 hits.
Hodoscope[7] 4.9867832321086 (nsec)
Hodoscope 2 has 3 hits.
Hodoscope[9] 43.184153188907 (nsec)
Hodoscope[10] 245.82002534641 (nsec)
Hodoscope[11] 245.15967872428 (nsec)
Drift Chamber 1 has 5 hits.
Layer[0] : time 6.6709483625156 (nsec) --- local (x,y) 0.028554733854253, 0.11288425077491
Layer[1] : time 8.3387688497016 (nsec) --- local (x,y) 0.0081954888959827, 0.16566803949222
Layer[2] : time 10.00658933911 (nsec) --- local (x,y) -0.037084812462791, 0.2097955115181
Layer[3] : time 11.674409830458 (nsec) --- local (x,y) -0.095739665655089, 0.24212776551843
Layer[4] : time 13.342230343245 (nsec) --- local (x,y) -0.19143883143498, 0.280955043982
Drift Chamber 2 has 5 hits.
Layer[0] : time 34.846775294742 (nsec) --- local (x,y) -149.42589417847, 1.0913236277365
Layer[1] : time 36.517528166378 (nsec) --- local (x,y) -179.08871186789, 1.1036475382268
Layer[2] : time 38.188280041957 (nsec) --- local (x,y) -208.74648619631, 1.1183344154187
Layer[3] : time 39.859030277492 (nsec) --- local (x,y) -238.39595920202, 1.1194071306527
Layer[4] : time 41.529777438209 (nsec) --- local (x,y) -268.02985388489, 1.1179763136207
EM Calorimeter has 19 hits. Total Edep is 9592.7528256058 (MeV)
Hadron Calorimeter has 1 hits. Total Edep is 1.1527738459778 (MeV)
... write file : B5.root - done
... write file : B5ntuple.root - done
... close file : B5.root - done
... close file : B5ntuple.root - done
0 events have been kept for refreshing and/or reviewing.
"/vis/reviewKeptEvents" to review them one by one.
"/vis/enable", then "/vis/viewer/flush" or "/vis/viewer/rebuild" to see them accumulated.
### Run 6 starts.
... create file : B5.root - done
... open analysis file : B5.root - done
... create file : B5ntuple.root - done
... open analysis file : B5.root - done
--> Event 0 starts.
>>> Event 0 >>> Simulation truth : proton (0,0,1000)
Hodoscope 1 has 1 hits.
Hodoscope[7] 6.8391294477092 (nsec)
Hodoscope 2 has 1 hits.
Hodoscope[9] 59.335155166658 (nsec)
Drift Chamber 1 has 15 hits.
Layer[0] : time 9.1530868142859 (nsec) --- local (x,y) -1.7003060531296, -1.2574642505728
Layer[1] : time 11.444865639518 (nsec) --- local (x,y) -3.1911477116536, -3.0583289559432
Layer[1] : time 11.445260708189 (nsec) --- local (x,y) -3.1913618155475, -3.0586122262793
Layer[1] : time 11.445260708189 (nsec) --- local (x,y) -3.1913618155475, -3.0586122262793
Layer[1] : time 11.44579977117 (nsec) --- local (x,y) -3.2120298396826, -3.0652161442389
Layer[1] : time 11.447012500352 (nsec) --- local (x,y) -3.2535022616029, -3.0849991561147
Layer[1] : time 11.448239122897 (nsec) --- local (x,y) -3.2167984846275, -3.066950610984
Layer[1] : time 11.449579352467 (nsec) --- local (x,y) -3.2053947670375, -3.0513542557342
Layer[1] : time 11.450651467865 (nsec) --- local (x,y) -3.1944465815106, -3.0667120862004
Layer[1] : time 11.451693660894 (nsec) --- local (x,y) -3.1675510263612, -3.0709428730859
Layer[1] : time 11.452616037749 (nsec) --- local (x,y) -3.149827760649, -3.0819530439862
Layer[1] : time 11.44579977117 (nsec) --- local (x,y) -3.2120298396826, -3.0652161442389
Layer[2] : time 13.736836636682 (nsec) --- local (x,y) -4.3885203351499, -4.6056021441795
Layer[3] : time 16.028986497908 (nsec) --- local (x,y) -5.7011362343429, -6.2665502911047
Layer[4] : time 18.321316375366 (nsec) --- local (x,y) -7.1302349229711, -8.1703402567636
Drift Chamber 2 has 5 hits.
Layer[0] : time 47.85525356834 (nsec) --- local (x,y) -177.50275227276, -44.02503126221
Layer[1] : time 50.155303948642 (nsec) --- local (x,y) -209.10940781929, -47.423401566478
Layer[2] : time 52.455623670988 (nsec) --- local (x,y) -240.53694749766, -50.914728862583
Layer[3] : time 54.756095232873 (nsec) --- local (x,y) -271.696617012, -54.4379571935
Layer[4] : time 57.056828188829 (nsec) --- local (x,y) -303.16204527942, -57.611673758328
EM Calorimeter has 6 hits. Total Edep is 335.49967869246 (MeV)
Hadron Calorimeter has 1 hits. Total Edep is 0.13769058658181 (MeV)
... write file : B5.root - done
... write file : B5ntuple.root - done
... close file : B5.root - done
... close file : B5ntuple.root - done
0 events have been kept for refreshing and/or reviewing.
"/vis/reviewKeptEvents" to review them one by one.
"/vis/enable", then "/vis/viewer/flush" or "/vis/viewer/rebuild" to see them accumulated.
### Run 7 starts.
... create file : B5.root - done
... open analysis file : B5.root - done
... create file : B5ntuple.root - done
... open analysis file : B5.root - done
--> Event 0 starts.
>>> Event 0 >>> Simulation truth : pi+ (0,0,1000)
Hodoscope 1 has 1 hits.
Hodoscope[7] 5.0351328396979 (nsec)
Hodoscope 2 has 1 hits.
Hodoscope[10] 43.130372899128 (nsec)
Drift Chamber 1 has 5 hits.
Layer[0] : time 6.7357021989171 (nsec) --- local (x,y) 0.48736932095771, -1.5632820632101
Layer[1] : time 8.4197720672591 (nsec) --- local (x,y) 0.68882804513895, -2.3827925991713
Layer[2] : time 10.103845114249 (nsec) --- local (x,y) 0.82659388901757, -3.162433339196
Layer[3] : time 11.787921241599 (nsec) --- local (x,y) 1.1875847128091, -4.0545076080575
Layer[4] : time 13.471999469737 (nsec) --- local (x,y) 1.5935890288088, -4.6070634835276
Drift Chamber 2 has 5 hits.
Layer[0] : time 34.719503435985 (nsec) --- local (x,y) -92.48427555994, -7.3729370872464
Layer[1] : time 36.404974956781 (nsec) --- local (x,y) -112.55139621836, -7.5640475233388
Layer[2] : time 38.090441686578 (nsec) --- local (x,y) -132.55506139381, -7.8954268939133
Layer[3] : time 39.775905714484 (nsec) --- local (x,y) -152.50827789895, -8.464189921769
Layer[4] : time 41.461375440267 (nsec) --- local (x,y) -172.48214183209, -9.0175330126414
EM Calorimeter has 21 hits. Total Edep is 568.09819939903 (MeV)
Hadron Calorimeter has 0 hits. Total Edep is 0 (MeV)
... write file : B5.root - done
... write file : B5ntuple.root - done
... close file : B5.root - done
... close file : B5ntuple.root - done
0 events have been kept for refreshing and/or reviewing.
"/vis/reviewKeptEvents" to review them one by one.
"/vis/enable", then "/vis/viewer/flush" or "/vis/viewer/rebuild" to see them accumulated.
### Run 8 starts.
... create file : B5.root - done
... open analysis file : B5.root - done
... create file : B5ntuple.root - done
... open analysis file : B5.root - done
--> Event 0 starts.
>>> Event 0 >>> Simulation truth : e+ (-0,0,1000)
Hodoscope 1 has 1 hits.
Hodoscope[7] 4.9867833779458 (nsec)
Hodoscope 2 has 2 hits.
Hodoscope[9] 43.197418066152 (nsec)
Hodoscope[24] 57.858849325328 (nsec)
Drift Chamber 1 has 5 hits.
Layer[0] : time 6.6709537660755 (nsec) --- local (x,y) 1.0369457035594, 0.93102019894036
Layer[1] : time 8.3387785516647 (nsec) --- local (x,y) 1.7909519033166, 1.7801792793074
Layer[2] : time 10.006604471708 (nsec) --- local (x,y) 2.574107125825, 2.788524716259
Layer[3] : time 11.674432122513 (nsec) --- local (x,y) 3.4086760352871, 3.9940881586654
Layer[4] : time 13.342259193758 (nsec) --- local (x,y) 4.306221996358, 5.0756070707912
Drift Chamber 2 has 6 hits.
Layer[0] : time 34.85776626691 (nsec) --- local (x,y) -151.11179719489, 20.263928034068
Layer[1] : time 36.528937431717 (nsec) --- local (x,y) -182.71701782342, 22.797566141124
Layer[1] : time 36.619227777364 (nsec) --- local (x,y) -122.85781413697, -129.33765771657
Layer[2] : time 38.200128518253 (nsec) --- local (x,y) -214.40534431581, 25.508211111181
Layer[3] : time 39.871335714879 (nsec) --- local (x,y) -246.15232283785, 28.418161521237
Layer[4] : time 41.542567838155 (nsec) --- local (x,y) -278.03359932473, 31.140540058196
EM Calorimeter has 7 hits. Total Edep is 957.24529557224 (MeV)
Hadron Calorimeter has 0 hits. Total Edep is 0 (MeV)
... write file : B5.root - done
... write file : B5ntuple.root - done
... close file : B5.root - done
... close file : B5ntuple.root - done
0 events have been kept for refreshing and/or reviewing.
"/vis/reviewKeptEvents" to review them one by one.
"/vis/enable", then "/vis/viewer/flush" or "/vis/viewer/rebuild" to see them accumulated.
Graphics systems deleted.
Visualization Manager deleting...