Geant4 9.6.0
Toolkit for the simulation of the passage of particles through matter
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G4hBremsstrahlungModel.cc
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25//
26// $Id$
27//
28// -------------------------------------------------------------------
29//
30// GEANT4 Class file
31//
32//
33// File name: G4hBremsstrahlungModel
34//
35// Author: Vladimir Ivanchenko on base of G4MuBremsstrahlungModel
36//
37// Creation date: 28.02.2008
38//
39// Modifications:
40//
41
42//
43// Class Description:
44//
45//
46// -------------------------------------------------------------------
47//
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50
53#include "G4SystemOfUnits.hh"
54
55using namespace std;
56
58 const G4String& nam)
60{}
61
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63
65{}
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68
70 G4double tkin,
71 G4double Z,
72 G4double gammaEnergy)
73// differential cross section
74{
75 G4double dxsection = 0.;
76
77 if( gammaEnergy > tkin) return dxsection ;
78 // G4cout << "G4hBremsstrahlungModel m= " << mass
79 // << " " << particle->GetParticleName() << G4endl;
80 G4double E = tkin + mass ;
81 G4double v = gammaEnergy/E ;
82 G4double delta = 0.5*mass*mass*v/(E-gammaEnergy) ;
83 G4double rab0=delta*sqrte ;
84
85 G4int iz = G4int(Z);
86 if(iz < 1) iz = 1;
87
88 G4double z13 = 1.0/nist->GetZ13(iz);
89 G4double dn = mass*nist->GetA27(iz)/(70.*MeV);
90
91 G4double b = btf;
92 if(1 == iz) b = bh;
93
94 // nucleus contribution logarithm
95 G4double rab1=b*z13;
96 G4double fn=log(rab1/(dn*(electron_mass_c2+rab0*rab1))*
97 (mass+delta*(dn*sqrte-2.))) ;
98 if(fn <0.) fn = 0. ;
99
100 G4double x = 1.0 - v;
101 if(particle->GetPDGSpin() != 0) x += 0.75*v*v;
102
103 dxsection = coeff*x*Z*Z*fn/gammaEnergy;
104
105 return dxsection;
106}
107
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double G4double
Definition: G4Types.hh:64
int G4int
Definition: G4Types.hh:66
const G4ParticleDefinition * particle
G4double GetA27(G4int Z)
G4double GetZ13(G4double Z)
G4hBremsstrahlungModel(const G4ParticleDefinition *p=0, const G4String &nam="hBrem")
virtual G4double ComputeDMicroscopicCrossSection(G4double tkin, G4double Z, G4double gammaEnergy)