Import Geant4 10.7.0 source tree

This commit is contained in:
Gabriele Cosmo
2020-12-04 12:30:43 +01:00
parent 67ba86d073
commit dab42d2018
3770 changed files with 226369 additions and 286486 deletions
@@ -121,8 +121,8 @@
3 "energy of neutral secondaries at creation"
4 "energy of charged at creation (log10(Ekin))"
5 "energy of neutral at creation (log10(Ekin))"
6 "x_vertex of charged secondaries (all)"
7 "x_vertex of charged secondaries (not absorbed)"
6 "x_vertex of charged secondaries (all)"
7 "x_vertex of charged secondaries (not absorbed)"
10 "(transmit, charged) : kinetic energy at exit of world"
11 "(transmit, charged) : ener fluence: dE(MeV)/dOmega"
12 "(transmit, charged) : space angle dN/dOmega"
@@ -141,20 +141,18 @@
41 "(reflect , neutral) : ener fluence: dE(MeV)/dOmega"
42 "(reflect , neutral) : space angle dN/dOmega"
43 "(reflect , neutral) : projected angle at exit of world"
50 "energy of Auger e- at creation"
51 "energy of fluorescence gamma at creation"
52 "energy of Auger e- at creation (log scale)"
53 "energy of fluorescence gamma at creation (log scale)"
54 "energy of PIXE Auger e- at creation"
55 "energy of PIXE gamma at creation"
56 "energy of PIXE Auger e- at creation (log scale)"
57 "energy of PIXE gamma at creation (log scale)"
58 "energy of G4DNA Auger e- at creation"
59 "energy of G4DNA gamma at creation"
60 "energy of G4DNA Auger e- at creation (log scale)"
61 "energy of G4DNA gamma at creation (log scale)"
The histograms can be viewed using ROOT or PAW.
50 "energy of Auger e- at creation"
51 "energy of fluorescence gamma at creation"
52 "energy of Auger e- at creation (log scale)"
53 "energy of fluorescence gamma at creation (log scale)"
54 "energy of PIXE Auger e- at creation"
55 "energy of PIXE gamma at creation"
56 "energy of PIXE Auger e- at creation (log scale)"
57 "energy of PIXE gamma at creation (log scale)"
58 "energy of G4DNA Auger e- at creation"
59 "energy of G4DNA gamma at creation"
60 "energy of G4DNA Auger e- at creation (log scale)"
61 "energy of G4DNA gamma at creation (log scale)"
One can control the name of the histograms file with the command:
/analysis/setFileName name (default testem5)
@@ -185,9 +183,6 @@
others| bichsel.mac | vincour.mac | shen1.mac shen2.mac
| | gottsch.mac | tramu.mac
--------------------------------------------------------
The relevant part of the GEANT3 code is in the subdirectory geant3 together
with the xxxx.dat input files.
9- HOW TO START ?
@@ -200,3 +195,51 @@
Idle> control/execute vis.mac
Idle> run/beamOn 5
....
Macros provided in this example:
- acosta.mac: Back x-ray emission by 20 keV electrons in Silver.
(E. Acosta et al. Journal of Applied Physics 83(11) 1998 page 6038,
Fig. 4-5-6)
- anthony.mac: LPM and dielectric effect measurement: 25 GeV electrons
through thin foils.
(P.L. Anthony et al. Phys.Rev. D 56 (1997) page 1373.)
- atima.mac: to test PhysListEm19DStandard for ions
- berger.mac: Energy deposit by 1 MeV electrons in silicon counters.
(M.J.Berger et al. NIM 69 (1969) page 181.)
- bichsel.mac: 0.766 MeV protons, transmitted through 1.37 mg/cm2 Al
(H.Bichsel Phys.Rev. 112 (1958) page 182.)
- dedx1.mac: to control dE/dx calculation.
- dedx2.mac: to control dE/dx calculation. High statistic and plot
- dna.mac: to illustrate DNA physics
- fluo.mac: to illustrate atomic deexcitation options
- gammaSpectrum.mac: to plot gamma spectrum with/without atomic deexcitation.
- geom.mac: to play with geometry (can be run interactively with visualization)
- gottsch.mac: 158.6 MeV protons, transmitted through 0.2160 g/cm2 Al
(B.Gottschalk et al. NIM B74 (1993) page 467.)
- hanson.mac: Angle distribution of 15.7 MeV electrons transmitted through
thin gold foils.
(A.O.Hanson et al. Phys.Rev.84 (1951) page 634.)
- hunger.mac: Back scattering of 41 keV electrons.
(H.J. Hunger and L. Kuchler Phys. Stat. Sol.(a) 56, K45 (1979))
- ion.mac: ion C12 in 1m Iron
- kulchi.mac: 2.25 MeV e-, transmitted through 26.60 mg/cm2 Al
(L.Kulchitsky Phys.Rev. 61 (1941) page 254.)
- mumsc.mac: 100 GeV mu+, transmitted through 1 m of iron
- mutev.mac: 1 TeV mu+, transmitted through 1 m of iron
- pixe.mac: to illustrate atomic deexcitation options
- posi.mac: to test PhysListEm19DStandard for positron
- shen1.mac: Angle distribution of high energy (50-200 GeV/c) protons
transmitted through different targets.
(G. Shen et al. Phys.Rev. D20 (1979) page 1584.)
- shen2.mac: proton 175 GeV/c, transmitted through 8.004 mm Al
(G. Shen et al. Phys.Rev. D20 (1979) page 1584.)
- tavora.mac: Back scattering of 35 keV electrons in Silver.
(L.M. Tavora et al. J.Phys.D: Appl. Phys. 33 (2000) page 2497,
Fig. 7)
- tramu.mac: 1 TeV mu+, transmitted through 3 m of iron
(Rev. of Particle Physics Eur. Phys. Jour. C (2000) page 172.
Rev. of Particle Physics Letters B 592 (2004) page 251.)
- vincour.mac: Angle distribution of 6.56 MeV protons transmitted through
thin silicon targets.
(J.Vincour,P.Bem NIM 148 (1978) page 396.)
- vis.mac - to activate visualization