source: trunk/source/processes/hadronic/cross_sections/include/G4ElectroNuclearCrossSection.hh @ 962

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27// GEANT4 tag $Name: geant4-09-02-ref-02 $
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29//
30// GEANT4 physics class: G4ElectroNuclearCrossSection -- header file
31// M.V. Kossov, ITEP(Moscow), 24-OCT-01
32// The last update: M.V. Kossov, CERN/ITEP (Moscow) 25-Sept-03
33//
34
35#ifndef G4ElectroNuclearCrossSection_h
36#define G4ElectroNuclearCrossSection_h 1
37
38#include "G4VCrossSectionDataSet.hh"
39#include "G4DynamicParticle.hh"
40#include "G4Element.hh"
41#include "G4ParticleTable.hh"
42#include "G4NucleiProperties.hh"
43#include <vector>
44#include "Randomize.hh"
45#include "G4Electron.hh"
46#include "G4Positron.hh"
47
48class G4ElectroNuclearCrossSection : public G4VCrossSectionDataSet
49{
50public:
51
52  G4ElectroNuclearCrossSection();
53  virtual ~G4ElectroNuclearCrossSection();
54
55  G4bool IsApplicable(const G4DynamicParticle* aParticle, const G4Element* )
56  {
57    return IsZAApplicable(aParticle, 0., 0.);
58  }
59
60  G4bool IsZAApplicable(const G4DynamicParticle* aParticle, G4double /*ZZ*/, 
61                                                            G4double /*AA*/)
62  {
63    G4bool result = false;
64    if( aParticle->GetDefinition()==G4Electron::ElectronDefinition()) result = true;
65    if( aParticle->GetDefinition()==G4Positron::PositronDefinition()) result = true;
66    return result;
67  }
68
69
70  G4double GetCrossSection(const G4DynamicParticle* aParticle, 
71                           const G4Element* anElement, G4double T=0.);
72
73  G4double GetIsoZACrossSection(const G4DynamicParticle* aParticle, 
74                                G4double ZZ, G4double AA, G4double T=0.);
75
76
77  G4double GetEquivalentPhotonEnergy();
78
79  G4double GetVirtualFactor(G4double nu, G4double Q2);
80
81  G4double GetEquivalentPhotonQ2(G4double nu);
82
83  void BuildPhysicsTable(const G4ParticleDefinition&) {}
84
85  void DumpPhysicsTable(const G4ParticleDefinition&) {}
86
87private:
88  G4int    GetFunctions(G4double a, G4double* x, G4double* y, G4double* z);
89  //G4double LinearFit(G4double X, G4int N, const G4double* XN, const G4double* YN);
90  G4double ThresholdEnergy(G4int Z, G4int N);
91  G4double HighEnergyJ1(G4double lE);
92  G4double HighEnergyJ2(G4double lE);
93  G4double HighEnergyJ3(G4double lE);
94  G4double SolveTheEquation(G4double f);
95  G4double Fun(G4double x);
96  G4double DFun(G4double x);
97
98// Body
99private:
100  static G4int     lastN;    // The last N of calculated nucleus
101  static G4int     lastZ;    // The last Z of calculated nucleus
102  static G4int     lastF;    // Last used in the cross section TheFirstBin
103  static G4double* lastJ1;   // Pointer to the last array of the J1 function
104  static G4double* lastJ2;   // Pointer to the last array of the J2 function
105  static G4double* lastJ3;   // Pointer to the last array of the J3 function
106  static G4int     lastL;    // Last used in the cross section TheLastBin
107  static G4double  lastE;    // Last used in the cross section Energy
108  static G4double  lastTH;   // Last value of the Energy Threshold
109  static G4double  lastSig;  // Last value of the Cross Section
110  static G4double  lastG;    // Last value of gamma=lnE-ln(me)
111  static G4double  lastH;    // Last value of the High energy A-dependence
112
113  static std::vector <G4double*> J1;     // Vector of pointers to the J1 tabulated functions
114  static std::vector <G4double*> J2;     // Vector of pointers to the J2 tabulated functions
115  static std::vector <G4double*> J3;     // Vector of pointers to the J3 tabulated functions
116};
117
118inline G4double G4ElectroNuclearCrossSection::DFun(G4double x)// Parametrization of the PhotoNucCS
119{
120  static const G4double shd=1.0734;                    // HE PomShadowing(D)
121  static const G4double poc=0.0375;                    // HE Pomeron coefficient
122  static const G4double pos=16.5;                      // HE Pomeron shift
123  static const G4double reg=.11;                       // HE Reggeon slope
124  static const G4double mel=0.5109989;                 // Mass of an electron in MeV
125  static const G4double lmel=std::log(mel);                 // Log of an electron mass
126  G4double y=std::exp(x-lastG-lmel);                        // y for the x
127  G4double flux=lastG*(2.-y*(2.-y))-1.;                // flux factor
128  return (poc*(x-pos)+shd*std::exp(-reg*x))*flux;
129}
130
131inline G4double G4ElectroNuclearCrossSection::Fun(G4double x) // Integrated PhoNuc cross section
132{
133  G4double dlg1=lastG+lastG-1.;
134  G4double lgoe=lastG/lastE;
135  G4double HE2=HighEnergyJ2(x);
136  return dlg1*HighEnergyJ1(x)-lgoe*(HE2+HE2-HighEnergyJ3(x)/lastE);
137}
138
139inline G4double G4ElectroNuclearCrossSection::HighEnergyJ1(G4double lEn)
140{
141  static const G4double le=std::log(50000.); // std::log(E0)
142  static const G4double le2=le*le;      // std::log(E0)^2
143  static const G4double a=.0375;        // a
144  static const G4double ha=a*.5;        // a/2
145  static const G4double ab=a*16.5;      // a*b
146  static const G4double d=0.11;         // d
147  static const G4double cd=1.0734/d;    // c/d
148  static const G4double ele=std::exp(-d*le); // E0^(-d)
149  return ha*(lEn*lEn-le2)-ab*(lEn-le)-cd*(std::exp(-d*lEn)-ele);
150}
151
152inline G4double G4ElectroNuclearCrossSection::HighEnergyJ2(G4double lEn)
153{
154  static const G4double e=50000.;       // E0
155  static const G4double le=std::log(e);      // std::log(E0)
156  static const G4double le1=(le-1.)*e;  // (std::log(E0)-1)*E0
157  static const G4double a=.0375;        // a
158  static const G4double ab=a*16.5;      // a*b
159  static const G4double d=1.-0.11;      // 1-d
160  static const G4double cd=1.0734/d;    // c/(1-d)
161  static const G4double ele=std::exp(d*le);  // E0^(1-d)
162  G4double En=std::exp(lEn);
163  return a*((lEn-1.)*En-le1)-ab*(En-e)+cd*(std::exp(d*lEn)-ele);
164}
165
166inline G4double G4ElectroNuclearCrossSection::HighEnergyJ3(G4double lEn)
167{
168  static const G4double e=50000.;       // E0
169  static const G4double le=std::log(e);      // std::log(E0)
170  static const G4double e2=e*e;         // E0^2
171  static const G4double leh=(le-.5)*e2; // (std::log(E0)-.5)*E0^2
172  static const G4double ha=.0375*.5;    // a/2
173  static const G4double hab=ha*16.5;    // a*b/2
174  static const G4double d=2.-.11;       // 2-d
175  static const G4double cd=1.0734/d;    // c/(2-d)
176  static const G4double ele=std::exp(d*le);  // E0^(2-d)
177  G4double lastE2=std::exp(lEn+lEn);
178  return ha*((lEn-.5)*lastE2-leh)-hab*(lastE2-e2)+cd*(std::exp(d*lEn)-ele);
179}
180
181#endif
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