************************************************************* Geant4 version $Name: geant4-06-01 $ (25-March-2004) Copyright : Geant4 Collaboration Reference : NIM A 506 (2003), 250-303. WWW : http://cern.ch/geant4 ************************************************************* phot: Total cross sections from Sandia parametrisation. B01PhysicsList::SetCuts:CutLength : 1 (mm) Going to assign importance: 1, to volume: cell_01 Going to assign importance: 2, to volume: cell_02 Going to assign importance: 4, to volume: cell_03 Going to assign importance: 8, to volume: cell_04 Going to assign importance: 16, to volume: cell_05 Going to assign importance: 32, to volume: cell_06 Going to assign importance: 64, to volume: cell_07 Going to assign importance: 128, to volume: cell_08 Going to assign importance: 256, to volume: cell_09 Going to assign importance: 512, to volume: cell_10 Going to assign importance: 1024, to volume: cell_11 Going to assign importance: 2048, to volume: cell_12 Going to assign importance: 4096, to volume: cell_13 Going to assign importance: 8192, to volume: cell_14 Going to assign importance: 16384, to volume: cell_15 Going to assign importance: 32768, to volume: cell_16 Going to assign importance: 65536, to volume: cell_17 Going to assign importance: 131072, to volume: cell_18 === G4ProcessPlacer::AddProcessAsSecondDoIt: for: neutron ProcessName: MScoreProcess The initial Vectors: GPIL Vector: Decay LCapture LFission inelastic LElastic Transportation DoIt Vector: Transportation LElastic inelastic LFission LCapture Decay The final Vectors: GPIL Vector: Decay LCapture LFission inelastic LElastic MScoreProcess Transportation DoIt Vector: Transportation MScoreProcess LElastic inelastic LFission LCapture Decay ================================================ === G4ProcessPlacer::AddProcessAsSecondDoIt: for: neutron ProcessName: MassImportanceProcess The initial Vectors: GPIL Vector: Decay LCapture LFission inelastic LElastic MScoreProcess Transportation DoIt Vector: Transportation MScoreProcess LElastic inelastic LFission LCapture Decay The final Vectors: GPIL Vector: Decay LCapture LFission inelastic LElastic MScoreProcess MassImportanceProcess Transportation DoIt Vector: Transportation MassImportanceProcess MScoreProcess LElastic inelastic LFission LCapture Decay ================================================ conv: Total cross sections from a parametrisation. Good description from 1.5 MeV to 100 GeV for all Z. e+e- energies according Bethe-Heitler PhysicsTables from 1.022 MeV to 100 GeV in 100 bins. compt: Total cross sections from a parametrisation. Good description from 10 KeV to (100/Z) GeV. Scattered gamma energy according Klein-Nishina. PhysicsTables from 1 keV to 100 GeV in 80 bins. msc: Model variant of multiple scattering for e- Lambda tables from 100 eV to 100 TeV in 120 bins. Boundary algorithm is active with facrange= 0.199 eIoni: tables are built for e- dE/dx and range tables from 100 eV to 100 TeV in 120 bins. Lambda tables from threshold to 100 TeV in 120 bins. Step function: finalRange(mm)= 1, dRoverRange= 1, integral: 1 Delta cross sections from Moller+Bhabha, good description from 1 KeV to 100 GeV. eBrem: tables are built for e- dE/dx and range tables from 100 eV to 100 TeV in 120 bins. Lambda tables from threshold to 100 TeV in 120 bins. Total cross sections from a parametrisation based on the EEDL data library. Good description from 1 KeV to 100 GeV, log scale extrapolation above 100 GeV. eIoni: tables are built for e+ dE/dx and range tables from 100 eV to 100 TeV in 120 bins. Lambda tables from threshold to 100 TeV in 120 bins. Step function: finalRange(mm)= 1, dRoverRange= 1, integral: 1 Delta cross sections from Moller+Bhabha, good description from 1 KeV to 100 GeV. eBrem: tables are built for e+ dE/dx and range tables from 100 eV to 100 TeV in 120 bins. Lambda tables from threshold to 100 TeV in 120 bins. Total cross sections from a parametrisation based on the EEDL data library. Good description from 1 KeV to 100 GeV, log scale extrapolation above 100 GeV. annihil: Total cross section from Heilter formula(annihilation into 2 photons). gamma energies sampled according Heitler PhysicsTables from 10 keV to 10 TeV in 100 bins. msc: Model variant of multiple scattering for proton Lambda tables from 100 eV to 100 TeV in 120 bins. Boundary algorithm is active with facrange= 0.199 hIoni: tables are built for proton dE/dx and range tables from 100 eV to 100 TeV in 120 bins. Lambda tables from threshold to 100 TeV in 120 bins. Step function: finalRange(mm)= 1, dRoverRange= 0.2, integral: 0 Bether-Bloch model for Escaled > 2 MeV, parametrisation of Bragg peak below, Integral mode 0 msc: Model variant of multiple scattering for mu+ Lambda tables from 100 eV to 100 TeV in 120 bins. Boundary algorithm is active with facrange= 0.199 MuIoni: tables are built for mu+ dE/dx and range tables from 100 eV to 100 TeV in 120 bins. Lambda tables from threshold to 100 TeV in 120 bins. Step function: finalRange(mm)= 1, dRoverRange= 0.2, integral: 0 Bether-Bloch model for E > 0.2 MeV, parametrisation of Bragg peak below, radiative corrections for E > 1 GeV MuBrems: tables are built for mu+ dE/dx and range tables from 100 eV to 100 TeV in 120 bins. Lambda tables from threshold to 100 TeV in 120 bins. Parametrised model MuPairProd: tables are built for mu+ dE/dx and range tables from 100 eV to 100 TeV in 120 bins. Lambda tables from threshold to 100 TeV in 120 bins. Parametrised model ### All dEdx and Range tables are built ##### MuIoni: tables are built for mu- dE/dx and range tables from 100 eV to 100 TeV in 120 bins. Lambda tables from threshold to 100 TeV in 120 bins. Step function: finalRange(mm)= 1, dRoverRange= 0.2, integral: 0 Bether-Bloch model for E > 0.2 MeV, parametrisation of Bragg peak below, radiative corrections for E > 1 GeV msc: Model variant of multiple scattering for pi- Lambda tables from 100 eV to 100 TeV in 120 bins. Boundary algorithm is active with facrange= 0.199 Volume name | Importance| Tr.Entering| Population| Collisions| Coll*WGT| NumWGTedE| FluxWGTedE| Av.Tr.WGT| cell_01_rep:0............ | 1 | 106 | 131 | 120 | 120 | 0.032472038 | 9.2527983 | 1 | cell_02_rep:0............ | 2 | 72 | 157 | 148 | 74 | 8.9205605 | 9.2174133 | 1 | cell_03_rep:0............ | 4 | 93 | 212 | 211 | 52.75 | 7.4823819 | 8.5261163 | 1 | cell_04_rep:0............ | 8 | 112 | 219 | 254 | 31.75 | 3.5008375 | 7.7749792 | 1 | cell_05_rep:0............ | 16 | 128 | 262 | 321 | 20.0625 | 4.1377944 | 7.7074206 | 1 | cell_06_rep:0............ | 32 | 134 | 297 | 329 | 10.28125 | 6.6014772 | 7.7333631 | 1 | cell_07_rep:0............ | 64 | 156 | 316 | 391 | 6.109375 | 0.18088036 | 7.4546045 | 1 | cell_08_rep:0............ | 128 | 184 | 376 | 497 | 3.8828125 | 5.134922 | 6.7888989 | 1 | cell_09_rep:0............ | 256 | 211 | 445 | 591 | 2.3085938 | 0.061641191 | 6.5983902 | 1 | cell_10_rep:0............ | 512 | 239 | 494 | 707 | 1.3808594 | 5.1539762 | 6.6420088 | 1 | cell_11_rep:0............ | 1024 | 260 | 530 | 781 | 0.76269531 | 0.17684092 | 6.5343371 | 1 | cell_12_rep:0............ | 2048 | 289 | 596 | 928 | 0.453125 | 2.0888873 | 6.0537706 | 1 | cell_13_rep:0............ | 4096 | 301 | 643 | 1004 | 0.24511719 | 3.6000169 | 5.9038428 | 1 | cell_14_rep:0............ | 8192 | 327 | 682 | 1112 | 0.13574219 | 3.6317715 | 5.5996676 | 1 | cell_15_rep:0............ | 16384 | 332 | 673 | 974 | 0.059448242 | 3.4512276 | 5.5878681 | 1 | cell_16_rep:0............ | 32768 | 360 | 743 | 1194 | 0.036437988 | 3.1622704 | 5.4812661 | 1 | cell_17_rep:0............ | 65536 | 394 | 812 | 1230 | 0.018768311 | 3.5856689 | 5.5173971 | 1 | cell_18_rep:0............ | 131072 | 355 | 828 | 1436 | 0.010955811 | 0.23625257 | 5.1653559 | 1 | rest_rep:0............... | 131072 | 385 | 385 | 0 | 0 | 0 | 0 | 0 | shieldWorld_rep:0........ | 1 | 10 | 110 | 0 | 0 | 10 | 10 | 1 | === G4ProcessPlacer::RemoveProcess: for: neutron ProcessName: MassImportanceProcess, will be removed! The initial Vectors: GPIL Vector: Decay LCapture LFission inelastic LElastic MScoreProcess MassImportanceProcess Transportation DoIt Vector: Transportation MassImportanceProcess MScoreProcess LElastic inelastic LFission LCapture Decay The final Vectors: GPIL Vector: Decay LCapture LFission inelastic LElastic MScoreProcess Transportation DoIt Vector: Transportation MScoreProcess LElastic inelastic LFission LCapture Decay ================================================ === G4ProcessPlacer::RemoveProcess: for: neutron ProcessName: MScoreProcess, will be removed! The initial Vectors: GPIL Vector: Decay LCapture LFission inelastic LElastic MScoreProcess Transportation DoIt Vector: Transportation MScoreProcess LElastic inelastic LFission LCapture Decay The final Vectors: GPIL Vector: Decay LCapture LFission inelastic LElastic Transportation DoIt Vector: Transportation LElastic inelastic LFission LCapture Decay ================================================