Files
geant4/examples/extended/hadronic/FlukaCern/ProcessLevel/FinalState/ProcessLevel-FinalState.out
T
2023-06-30 09:09:57 +02:00

152 lines
8.7 KiB
Plaintext

=== Test of the HadronicGenerator ===
================= Configuration ==================
Model: FTFP_BERT
Ekin: [ 7000 , 7000 ] GeV
Number of collisions: 10
Number of hadron projectiles: 1
Number of materials: 1
IsIonProjectile: false
===================================================
### FinalStateHistoManager::Book: Successfully opended file all_secondaries.root for dumping histograms.
================================================================================
INCL++ WARNING
INCL++/G4ExcitationHandler could not use its own level-density parameter for fission
================================================================================
Collision 0 projectile=proton Ekin[MeV]=7e+06 direction=(0,0,1) material=G4_C=======================================================================
====== Geant4 Native Pre-compound Model Parameters ========
=======================================================================
Type of pre-compound inverse x-section 3
Pre-compound model active 1
Pre-compound excitation low energy 100 keV
Pre-compound excitation high energy 30 MeV
Angular generator for pre-compound model 1
Use NeverGoBack option for pre-compound model 0
Use SoftCutOff option for pre-compound model 0
Use CEM transitions for pre-compound model 1
Use GNASH transitions for pre-compound model 0
Use HETC submodel for pre-compound model 0
=======================================================================
====== Nuclear De-excitation Module Parameters ========
=======================================================================
Type of de-excitation inverse x-section 3
Type of de-excitation factory Evaporation+GEM
Number of de-excitation channels 68
Min excitation energy 10 eV
Min energy per nucleon for multifragmentation 200 GeV
Limit excitation energy for Fermi BreakUp 20 MeV
Level density (1/MeV) 0.075
Use simple level density model 1
Use discrete excitation energy of the residual 1
Time limit for long lived isomeres 1 ns
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
=======================================================================
--> #secondaries=44 impactParameter[fm]=2.20708 #projectileSpectatorNucleons=0 #targetSpectatorNucleons=10 #NNcollisions=2
List of produced secondaries:
j=0 pi0 p=(-278.056,-54.2443,249603249603) MeV
j=1 pi+ p=(230.029,220.459,171303171304) MeV
j=2 pi0 p=(-469.822,62.0587,83597.283598.7) MeV
j=3 kaon0L p=(-807.182,-630.872,7481.167567.36) MeV
j=4 pi+ p=(-18.2834,94.391,4761.174764.19) MeV
j=5 pi- p=(-65.525,38.2802,21213.921214.5) MeV
j=6 kaon+ p=(902.744,526.473,225354225357) MeV
j=7 pi- p=(-25.0614,-160.697,62327.162327.5) MeV
j=8 proton p=(457.791,307.539,357.451145.55) MeV
j=9 pi+ p=(187.049,258.114,13773.813778.2) MeV
j=10 eta_prime p=(407.557,161.798,29438.329457.2) MeV
j=11 pi- p=(129.938,-141.881,4209.444216.15) MeV
j=12 pi0 p=(71.0042,453.782,6627.166644.43) MeV
j=13 neutron p=(-16.419,129.541,310.001997.965) MeV
j=14 proton p=(135.377,-168.25,28.0742963.212) MeV
j=15 pi0 p=(125.272,-388.858,1.53492e+061.53492e+06) MeV
j=16 neutron p=(-255.463,71.5904,3.54864e+063.54864e+06) MeV
j=17 pi0 p=(117.323,-60.3735,-34.8848191.951) MeV
j=18 neutron p=(446.611,-171.762,1383.281739.32) MeV
j=19 pi- p=(210.496,175.307,1032.121076.94) MeV
j=20 kaon+ p=(690.16,73.5808,9055.49095.37) MeV
j=21 pi- p=(177.308,-219.884,3488.423502.62) MeV
j=22 pi0 p=(-53.4748,65.7408,2602.062606.93) MeV
j=23 pi+ p=(-144.662,198.791,3725.553736.26) MeV
j=24 pi- p=(429.909,309.238,52688.552691.4) MeV
j=25 pi+ p=(-15.7564,-416.423,91345.391346.3) MeV
j=26 pi- p=(-35.5745,175.967,45452.845453.3) MeV
j=27 pi+ p=(-361.018,-259.16,2125021255.1) MeV
j=28 pi- p=(-1222.43,64.7139,89625.989634.4) MeV
j=29 pi0 p=(-295.877,103.056,27493.927496) MeV
j=30 pi+ p=(-308.863,130.216,5371453715.3) MeV
j=31 pi0 p=(-106.131,119.136,43773.943774.4) MeV
j=32 kaon0S p=(810.072,-3.24422,165782165785) MeV
j=33 pi0 p=(-115.05,-174.435,1450.991472.16) MeV
j=34 pi- p=(291.714,445.213,3613.763655.41) MeV
j=35 pi+ p=(72.3103,36.167,1728917289.7) MeV
j=36 anti_proton p=(-817.196,-1045.02,300634300639) MeV
j=37 pi0 p=(11.2051,-189.687,20817.620818.9) MeV
j=38 proton p=(-249.068,59.6892,80867.280873) MeV
j=39 He3 p=(117.034,-199.489,-159.672822.42) MeV
j=40 deuteron p=(-211.988,-209.404,-136.1621904.01) MeV
j=41 neutron p=(23.8186,-71.9476,-141.265953.144) MeV
j=42 neutron p=(-190.541,431.213,494.9871161.91) MeV
j=43 proton p=(18.7242,-146.424,-86.6639953.759) MeV
Collision 1 projectile=proton Ekin[MeV]=7e+06 direction=(0,0,1) material=G4_C
--> #secondaries=37 impactParameter[fm]=2.60398 #projectileSpectatorNucleons=0 #targetSpectatorNucleons=11 #NNcollisions=1
Collision 2 projectile=proton Ekin[MeV]=7e+06 direction=(0,0,1) material=G4_C
--> #secondaries=31 impactParameter[fm]=3.28119 #projectileSpectatorNucleons=0 #targetSpectatorNucleons=11 #NNcollisions=1
Collision 3 projectile=proton Ekin[MeV]=7e+06 direction=(0,0,1) material=G4_C
--> #secondaries=46 impactParameter[fm]=3.13666 #projectileSpectatorNucleons=0 #targetSpectatorNucleons=10 #NNcollisions=2
Collision 4 projectile=proton Ekin[MeV]=7e+06 direction=(0,0,1) material=G4_C
--> #secondaries=7 impactParameter[fm]=3.17708 #projectileSpectatorNucleons=0 #targetSpectatorNucleons=11 #NNcollisions=0
Collision 5 projectile=proton Ekin[MeV]=7e+06 direction=(0,0,1) material=G4_C
--> #secondaries=21 impactParameter[fm]=3.03126 #projectileSpectatorNucleons=0 #targetSpectatorNucleons=11 #NNcollisions=1
Collision 6 projectile=proton Ekin[MeV]=7e+06 direction=(0,0,1) material=G4_C
--> #secondaries=63 impactParameter[fm]=1.55971 #projectileSpectatorNucleons=0 #targetSpectatorNucleons=9 #NNcollisions=3
Collision 7 projectile=proton Ekin[MeV]=7e+06 direction=(0,0,1) material=G4_C
--> #secondaries=6 impactParameter[fm]=2.7974 #projectileSpectatorNucleons=0 #targetSpectatorNucleons=11 #NNcollisions=0
Collision 8 projectile=proton Ekin[MeV]=7e+06 direction=(0,0,1) material=G4_C
--> #secondaries=26 impactParameter[fm]=2.42631 #projectileSpectatorNucleons=0 #targetSpectatorNucleons=11 #NNcollisions=1
Collision 9 projectile=proton Ekin[MeV]=7e+06 direction=(0,0,1) material=G4_C
--> #secondaries=42 impactParameter[fm]=2.60456 #projectileSpectatorNucleons=0 #targetSpectatorNucleons=10 #NNcollisions=1
========================================================
Number of events 10
Average (per event) number of B10[718.380] 0.1
Average (per event) number of He3 0.3
Average (per event) number of alpha 0.8
Average (per event) number of anti_lambda 0.1
Average (per event) number of anti_proton 0.4
Average (per event) number of deuteron 0.8
Average (per event) number of eta 0.8
Average (per event) number of eta_prime 0.9
Average (per event) number of gamma 0.3
Average (per event) number of kaon+ 0.9
Average (per event) number of kaon- 0.4
Average (per event) number of kaon0L 0.7
Average (per event) number of kaon0S 1
Average (per event) number of lambda 0.1
Average (per event) number of neutron 2.2
Average (per event) number of pi+ 6.4
Average (per event) number of pi- 6.2
Average (per event) number of pi0 6
Average (per event) number of proton 3
Average (per event) number of sigma+ 0.1
Average (per event) number of sigma- 0.2
Average (per event) number of sigma0 0.3
Average (per event) number of triton 0.3
========================================================
### All histograms saved to all_secondaries.root
### All histograms saved to all_secondaries.hist
Final random number = 0.957412
Processed 10 events (collisions) in 2.706730e-01 seconds. Average: 27.0673 ms / event.
=== End of test ===