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geant4/examples/advanced/nanobeam/nanobeam.out
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Geant4 version Name: global-V09-01-17 (19-December-2008)
Copyright : Geant4 Collaboration
Reference : NIM A 506 (2003), 250-303
WWW : http://cern.ch/geant4
*************************************************************
***** Table : Nb of materials = 2 *****
Material: H2O density: 1.000 g/cm3 RadL: 36.092 cm Nucl.Int.Length: 75.416 cm Imean: 70.893 eV
---> Element: Hydrogen (H) Z = 1.0 N = 1.0 A = 1.01 g/mole ElmMassFraction: 11.21 % ElmAbundance 66.67 %
---> Element: Oxygen (O) Z = 8.0 N = 16.0 A = 16.00 g/mole ElmMassFraction: 88.79 % ElmAbundance 33.33 %
Material: Vacuum density: 0.000 kg/m3 RadL: 204727512.315 pc Nucl.Int.Length: 113804112.800 pc Imean: 21.800 eV temperature: 273.15 K pressure: 1.00 atm
---> Element: Vacuum ( ) Z = 1.0 N = 1.0 A = 1.01 g/mole ElmMassFraction: 100.00 % ElmAbundance 100.00 %
### NIST DataBase for Materials is used
PhysicsList::SetCuts:CutLength : 1 um
**********************
**** CONFIGURATION ***
**********************
=====> You have selected :
-> Square quadrupole field
G1 (T/m) = -11.9646
G2 (T/m) = 16.4947
G3 (T/m) = 9.86677
G4 (T/m) = -6.24449
phot: for gamma SubType= 12
===== EM models for the G4Region DefaultRegionForTheWorld ======
PhotoElectric : Emin= 0 eV Emax= 100 TeV
compt: for gamma SubType= 13
Lambda tables from 100 eV to 100 TeV in 84 bins, spline: 1
===== EM models for the G4Region DefaultRegionForTheWorld ======
Klein-Nishina : Emin= 0 eV Emax= 100 TeV
conv: for gamma SubType= 14
Lambda tables from 1.022 MeV to 100 TeV in 84 bins, spline: 1
===== EM models for the G4Region DefaultRegionForTheWorld ======
Bethe-Heitler : Emin= 0 eV Emax= 100 TeV
msc: for e- SubType= 10
Lambda tables from 100 eV to 100 TeV in 84 bins, spline: 1
RangeFactor= 0.02, step limit type: 1, lateralDisplacement: 1, skin= 3, geomFactor= 2.5
===== EM models for the G4Region DefaultRegionForTheWorld ======
UrbanMscUni : Emin= 0 eV Emax= 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 in 84 bins, spline: 1
finalRange(mm)= 1, dRoverRange= 0.2, integral: 1, fluct: 1, linLossLimit= 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 in 84 bins, spline: 1
LPM flag: 1 for E > 1 GeV
===== EM models for the G4Region DefaultRegionForTheWorld ======
eBrem : Emin= 0 eV Emax= 1 GeV
eBremRel : Emin= 1 GeV Emax= 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 in 84 bins, spline: 1
finalRange(mm)= 1, dRoverRange= 0.2, integral: 1, fluct: 1, linLossLimit= 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 in 84 bins, spline: 1
LPM flag: 1 for E > 1 GeV
===== EM models for the G4Region DefaultRegionForTheWorld ======
eBrem : Emin= 0 eV Emax= 1 GeV
eBremRel : Emin= 1 GeV Emax= 100 TeV
annihil: for e+ SubType= 5
Lambda tables from 100 eV to 100 TeV in 84 bins, spline: 1
===== EM models for the G4Region DefaultRegionForTheWorld ======
eplus2gg : Emin= 0 eV Emax= 100 TeV
msc: for proton SubType= 10
Lambda tables from 100 eV to 100 TeV in 84 bins, spline: 1
RangeFactor= 0.2, step limit type: 0, lateralDisplacement: 1, skin= 3
===== EM models for the G4Region DefaultRegionForTheWorld ======
UrbanMscUni90 : Emin= 0 eV Emax= 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 in 84 bins, spline: 1
finalRange(mm)= 1, dRoverRange= 0.2, integral: 1, fluct: 1, linLossLimit= 0.01
NuclearStopping= 1
===== EM models for the G4Region DefaultRegionForTheWorld ======
Bragg : Emin= 0 eV Emax= 2 MeV
BetheBloch : Emin= 2 MeV Emax= 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 in 84 bins, spline: 1
finalRange(mm)= 1, dRoverRange= 0.2, integral: 1, fluct: 1, linLossLimit= 0.01
NuclearStopping= 1
===== EM models for the G4Region DefaultRegionForTheWorld ======
Bragg : Emin= 0 eV Emax= 2 MeV
BetheBloch : Emin= 2 MeV Emax= 100 TeV
========= Table of registered couples ==============================
Index : 0 used in the geometry : Yes recalculation needed : No
Material : Vacuum
Range cuts : gamma 1 um e- 1 um e+ 1 um
Energy thresholds : gamma 990 eV e- 990 eV e+ 990 eV
Region(s) which use this couple :
DefaultRegionForTheWorld
====================================================================
-> Event= 1: X0(mm)= 0 X0(mm) = 0 Z0(m) = -8.87 THETA(mrad)= -0.09 PHI(mrad)= -0.09 E0(MeV)= 2.9997
=>IMAGE : X(microns)=-3.5867089010791 Y(microns)=-0.45887737486595 THETA(mrad)=-5.8367647764082 PHI(mrad)=-9.1305836538323
-> Event= 2: X0(mm)= 0 X0(mm) = 0 Z0(m) = -8.87 THETA(mrad)= -0.03 PHI(mrad)= -0.09 E0(MeV)= 2.9997
=>IMAGE : X(microns)=-0.48858394982666 Y(microns)=-0.30133481278277 THETA(mrad)=-1.9441075333148 PHI(mrad)=-9.1297089122698
-> Event= 3: X0(mm)= 0 X0(mm) = 0 Z0(m) = -8.87 THETA(mrad)= 0.03 PHI(mrad)= -0.09 E0(MeV)= 2.9997
=>IMAGE : X(microns)=0.48858394982666 Y(microns)=-0.30133481278277 THETA(mrad)=1.9441075333148 PHI(mrad)=-9.1297089122698
-> Event= 4: X0(mm)= 0 X0(mm) = 0 Z0(m) = -8.87 THETA(mrad)= 0.09 PHI(mrad)= -0.09 E0(MeV)= 2.9997
=>IMAGE : X(microns)=3.5867089010791 Y(microns)=-0.45887737486595 THETA(mrad)=5.8367647764082 PHI(mrad)=-9.1305836538323
-> Event= 5: X0(mm)= 0 X0(mm) = 0 Z0(m) = -8.87 THETA(mrad)= -0.09 PHI(mrad)= -0.03 E0(MeV)= 2.9997
=>IMAGE : X(microns)=-3.3399324435349 Y(microns)=-0.11876365231005 THETA(mrad)=-5.8363619945219 PHI(mrad)=-3.0434522502772
-> Event= 6: X0(mm)= 0 X0(mm) = 0 Z0(m) = -8.87 THETA(mrad)= -0.03 PHI(mrad)= -0.03 E0(MeV)= 2.9997
=>IMAGE : X(microns)=-0.40645857802869 Y(microns)=-0.066246823180853 THETA(mrad)=-1.9439736159923 PHI(mrad)=-3.0431621480574
-> Event= 7: X0(mm)= 0 X0(mm) = 0 Z0(m) = -8.87 THETA(mrad)= 0.03 PHI(mrad)= -0.03 E0(MeV)= 2.9997
=>IMAGE : X(microns)=0.40645857802869 Y(microns)=-0.066246823180853 THETA(mrad)=1.9439736159923 PHI(mrad)=-3.0431621480574
-> Event= 8: X0(mm)= 0 X0(mm) = 0 Z0(m) = -8.87 THETA(mrad)= 0.09 PHI(mrad)= -0.03 E0(MeV)= 2.9997
=>IMAGE : X(microns)=3.3399324435349 Y(microns)=-0.11876365231005 THETA(mrad)=5.8363619945219 PHI(mrad)=-3.0434522502772
-> Event= 9: X0(mm)= 0 X0(mm) = 0 Z0(m) = -8.87 THETA(mrad)= -0.09 PHI(mrad)= 0.03 E0(MeV)= 2.9997
=>IMAGE : X(microns)=-3.3399324435349 Y(microns)=0.11876365231005 THETA(mrad)=-5.8363619945219 PHI(mrad)=3.0434522502772
-> Event= 10: X0(mm)= 0 X0(mm) = 0 Z0(m) = -8.87 THETA(mrad)= -0.03 PHI(mrad)= 0.03 E0(MeV)= 2.9997
=>IMAGE : X(microns)=-0.40645857802869 Y(microns)=0.066246823180853 THETA(mrad)=-1.9439736159923 PHI(mrad)=3.0431621480574
-> Event= 11: X0(mm)= 0 X0(mm) = 0 Z0(m) = -8.87 THETA(mrad)= 0.03 PHI(mrad)= 0.03 E0(MeV)= 2.9997
=>IMAGE : X(microns)=0.40645857802869 Y(microns)=0.066246823180853 THETA(mrad)=1.9439736159923 PHI(mrad)=3.0431621480574
-> Event= 12: X0(mm)= 0 X0(mm) = 0 Z0(m) = -8.87 THETA(mrad)= 0.09 PHI(mrad)= 0.03 E0(MeV)= 2.9997
=>IMAGE : X(microns)=3.3399324435349 Y(microns)=0.11876365231005 THETA(mrad)=5.8363619945219 PHI(mrad)=3.0434522502772
-> Event= 13: X0(mm)= 0 X0(mm) = 0 Z0(m) = -8.87 THETA(mrad)= -0.09 PHI(mrad)= 0.09 E0(MeV)= 2.9997
=>IMAGE : X(microns)=-3.5867089010791 Y(microns)=0.45887737486595 THETA(mrad)=-5.8367647764082 PHI(mrad)=9.1305836538323
-> Event= 14: X0(mm)= 0 X0(mm) = 0 Z0(m) = -8.87 THETA(mrad)= -0.03 PHI(mrad)= 0.09 E0(MeV)= 2.9997
=>IMAGE : X(microns)=-0.48858394982666 Y(microns)=0.30133481278277 THETA(mrad)=-1.9441075333148 PHI(mrad)=9.1297089122698
-> Event= 15: X0(mm)= 0 X0(mm) = 0 Z0(m) = -8.87 THETA(mrad)= 0.03 PHI(mrad)= 0.09 E0(MeV)= 2.9997
=>IMAGE : X(microns)=0.48858394982666 Y(microns)=0.30133481278277 THETA(mrad)=1.9441075333148 PHI(mrad)=9.1297089122698
-> Event= 16: X0(mm)= 0 X0(mm) = 0 Z0(m) = -8.87 THETA(mrad)= 0.09 PHI(mrad)= 0.09 E0(MeV)= 2.9997
=>IMAGE : X(microns)=3.5867089010791 Y(microns)=0.45887737486595 THETA(mrad)=5.8367647764082 PHI(mrad)=9.1305836538323
-> Event= 17: X0(mm)= 0 X0(mm) = 0 Z0(m) = -8.87 THETA(mrad)= -0.09 PHI(mrad)= -0.09 E0(MeV)= 3.0003
=>IMAGE : X(microns)=-1.7196770328417 Y(microns)=-0.11880586487665 THETA(mrad)=-5.8315814398783 PHI(mrad)=-9.124902487762
-> Event= 18: X0(mm)= 0 X0(mm) = 0 Z0(m) = -8.87 THETA(mrad)= -0.03 PHI(mrad)= -0.09 E0(MeV)= 3.0003
=>IMAGE : X(microns)=0.13297208222397 Y(microns)=0.038567370885464 THETA(mrad)=-1.9423814979315 PHI(mrad)=-9.1240303956597
-> Event= 19: X0(mm)= 0 X0(mm) = 0 Z0(m) = -8.87 THETA(mrad)= 0.03 PHI(mrad)= -0.09 E0(MeV)= 3.0003
=>IMAGE : X(microns)=-0.13297208222397 Y(microns)=0.038567370885464 THETA(mrad)=1.9423814979315 PHI(mrad)=-9.1240303956597
-> Event= 20: X0(mm)= 0 X0(mm) = 0 Z0(m) = -8.87 THETA(mrad)= 0.09 PHI(mrad)= -0.09 E0(MeV)= 3.0003
=>IMAGE : X(microns)=1.7196770328417 Y(microns)=-0.11880586487665 THETA(mrad)=5.8315814398783 PHI(mrad)=-9.124902487762
-> Event= 21: X0(mm)= 0 X0(mm) = 0 Z0(m) = -8.87 THETA(mrad)= -0.09 PHI(mrad)= -0.03 E0(MeV)= 3.0003
=>IMAGE : X(microns)=-1.4734196916507 Y(microns)=-0.0054541489705432 THETA(mrad)=-5.8311795427551 PHI(mrad)=-3.0415592251015
-> Event= 22: X0(mm)= 0 X0(mm) = 0 Z0(m) = -8.87 THETA(mrad)= -0.03 PHI(mrad)= -0.03 E0(MeV)= 3.0003
=>IMAGE : X(microns)=0.21499992476237 Y(microns)=0.047025989915602 THETA(mrad)=-1.9422479641261 PHI(mrad)=-3.0412671975718
-> Event= 23: X0(mm)= 0 X0(mm) = 0 Z0(m) = -8.87 THETA(mrad)= 0.03 PHI(mrad)= -0.03 E0(MeV)= 3.0003
=>IMAGE : X(microns)=-0.21499992476237 Y(microns)=0.047025989915602 THETA(mrad)=1.9422479641261 PHI(mrad)=-3.0412671975718
-> Event= 24: X0(mm)= 0 X0(mm) = 0 Z0(m) = -8.87 THETA(mrad)= 0.09 PHI(mrad)= -0.03 E0(MeV)= 3.0003
=>IMAGE : X(microns)=1.4734196916507 Y(microns)=-0.0054541489705432 THETA(mrad)=5.8311795427551 PHI(mrad)=-3.0415592251015
-> Event= 25: X0(mm)= 0 X0(mm) = 0 Z0(m) = -8.87 THETA(mrad)= -0.09 PHI(mrad)= 0.03 E0(MeV)= 3.0003
=>IMAGE : X(microns)=-1.4734196916507 Y(microns)=0.0054541489705432 THETA(mrad)=-5.8311795427551 PHI(mrad)=3.0415592251015
-> Event= 26: X0(mm)= 0 X0(mm) = 0 Z0(m) = -8.87 THETA(mrad)= -0.03 PHI(mrad)= 0.03 E0(MeV)= 3.0003
=>IMAGE : X(microns)=0.21499992476237 Y(microns)=-0.047025989915602 THETA(mrad)=-1.9422479641261 PHI(mrad)=3.0412671975718
-> Event= 27: X0(mm)= 0 X0(mm) = 0 Z0(m) = -8.87 THETA(mrad)= 0.03 PHI(mrad)= 0.03 E0(MeV)= 3.0003
=>IMAGE : X(microns)=-0.21499992476237 Y(microns)=-0.047025989915602 THETA(mrad)=1.9422479641261 PHI(mrad)=3.0412671975718
-> Event= 28: X0(mm)= 0 X0(mm) = 0 Z0(m) = -8.87 THETA(mrad)= 0.09 PHI(mrad)= 0.03 E0(MeV)= 3.0003
=>IMAGE : X(microns)=1.4734196916507 Y(microns)=0.0054541489705432 THETA(mrad)=5.8311795427551 PHI(mrad)=3.0415592251015
-> Event= 29: X0(mm)= 0 X0(mm) = 0 Z0(m) = -8.87 THETA(mrad)= -0.09 PHI(mrad)= 0.09 E0(MeV)= 3.0003
=>IMAGE : X(microns)=-1.7196770328417 Y(microns)=0.11880586487665 THETA(mrad)=-5.8315814398783 PHI(mrad)=9.124902487762
-> Event= 30: X0(mm)= 0 X0(mm) = 0 Z0(m) = -8.87 THETA(mrad)= -0.03 PHI(mrad)= 0.09 E0(MeV)= 3.0003
=>IMAGE : X(microns)=0.13297208222397 Y(microns)=-0.038567370885464 THETA(mrad)=-1.9423814979315 PHI(mrad)=9.1240303956597
-> Event= 31: X0(mm)= 0 X0(mm) = 0 Z0(m) = -8.87 THETA(mrad)= 0.03 PHI(mrad)= 0.09 E0(MeV)= 3.0003
=>IMAGE : X(microns)=-0.13297208222397 Y(microns)=-0.038567370885464 THETA(mrad)=1.9423814979315 PHI(mrad)=9.1240303956597
-> Event= 32: X0(mm)= 0 X0(mm) = 0 Z0(m) = -8.87 THETA(mrad)= 0.09 PHI(mrad)= 0.09 E0(MeV)= 3.0003
=>IMAGE : X(microns)=1.7196770328417 Y(microns)=0.11880586487665 THETA(mrad)=5.8315814398783 PHI(mrad)=9.124902487762