Geant4  9.6.p02
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G4RToEConvForElectron.cc
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27 // $Id$
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30 // --------------------------------------------------------------
31 // GEANT 4 class implementation file/ History:
32 // 5 Oct. 2002, H.Kuirashige : Structure created based on object model
33 // --------------------------------------------------------------
34 
35 #include "G4RToEConvForElectron.hh"
36 #include "G4ParticleDefinition.hh"
37 #include "G4ParticleTable.hh"
38 #include "G4Material.hh"
39 #include "G4PhysicsLogVector.hh"
40 
41 #include "G4ios.hh"
42 #include "G4PhysicalConstants.hh"
43 #include "G4SystemOfUnits.hh"
44 
46 {
48  if (theParticle ==0) {
49 #ifdef G4VERBOSE
50  if (GetVerboseLevel()>0) {
51  G4cout << " G4RToEConvForElectron::G4RToEConvForElectron() ";
52  G4cout << " Electron is not defined !!" << G4endl;
53  }
54 #endif
55  }
56 }
57 
59 {
60 }
61 
62 
63 // **********************************************************************
64 // ************************* ComputeLoss ********************************
65 // **********************************************************************
67  G4double KineticEnergy) const
68 {
69  static G4double Z;
70  static G4double taul, ionpot, ionpotlog;
71  const G4double cbr1=0.02, cbr2=-5.7e-5, cbr3=1., cbr4=0.072;
72  const G4double Tlow=10.*keV, Thigh=1.*GeV;
73  static G4double bremfactor= 0.1 ;
74 
75  static G4double Mass= theParticle->GetPDGMass();
76 
77  // calculate dE/dx for electrons
78  if( std::fabs(AtomicNumber-Z)>0.1 ) {
79  Z = AtomicNumber;
80  taul = Tlow/Mass;
81  ionpot = 1.6e-5*MeV*std::exp(0.9*std::log(Z))/Mass;
82  ionpotlog = std::log(ionpot);
83  }
84 
85 
86  G4double tau = KineticEnergy/Mass;
87  G4double dEdx;
88 
89  if(tau<taul) {
90  G4double t1 = taul+1.;
91  G4double t2 = taul+2.;
92  G4double tsq = taul*taul;
93  G4double beta2 = taul*t2/(t1*t1);
94  G4double f = 1.-beta2+std::log(tsq/2.)
95  +(0.5+0.25*tsq+(1.+2.*taul)*std::log(0.5))/(t1*t1);
96  dEdx = (std::log(2.*taul+4.)-2.*ionpotlog+f)/beta2;
97  dEdx = twopi_mc2_rcl2*Z*dEdx;
98  G4double clow = dEdx*std::sqrt(taul);
99  dEdx = clow/std::sqrt(KineticEnergy/Mass);
100 
101  } else {
102  G4double t1 = tau+1.;
103  G4double t2 = tau+2.;
104  G4double tsq = tau*tau;
105  G4double beta2 = tau*t2/(t1*t1);
106  G4double f = 1.-beta2+std::log(tsq/2.)
107  +(0.5+0.25*tsq+(1.+2.*tau)*std::log(0.5))/(t1*t1);
108  dEdx = (std::log(2.*tau+4.)-2.*ionpotlog+f)/beta2;
109  dEdx = twopi_mc2_rcl2*Z*dEdx;
110 
111  // loss from bremsstrahlung follows
112  G4double cbrem = (cbr1+cbr2*Z)
113  *(cbr3+cbr4*std::log(KineticEnergy/Thigh));
114  cbrem = Z*(Z+1.)*cbrem*tau/beta2;
115 
116  cbrem *= bremfactor ;
117 
118  dEdx += twopi_mc2_rcl2*cbrem;
119  }
120 
121  return dEdx;
122 }