Geant4 10.7.0
Toolkit for the simulation of the passage of particles through matter
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G4InitXscPAI.hh
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25//
26//
27//
28//
29// G4InitXscPAI.hh -- header file
30//
31// History:
32//
33// 02.04.04, V. Grichine: 1st version based on G4PAIxSection class
34
35#ifndef G4INITXSCPAI_HH
36#define G4INITXSCPAI_HH
37
38#include "G4ios.hh"
39#include "globals.hh"
40#include "Randomize.hh"
41#include "G4OrderedTable.hh"
42#include "G4PhysicsLogVector.hh"
43
45class G4SandiaTable;
46
48{
49public:
50 // Constructors
51 explicit G4InitXscPAI( const G4MaterialCutsCouple* matCC);
52
53 virtual ~G4InitXscPAI() ;
54
55 // Methods
56 // General control functions
57
58 void KillCloseIntervals();
59
60 void Normalisation();
61
62
63 // Physical methods
64
65
66 G4double RutherfordIntegral( G4int intervalNumber,
67 G4double limitLow,
68 G4double limitHigh ) ;
69
71
72 G4double ImPartDielectricConst( G4int intervalNumber,
73 G4double energy ) ;
74
76
78 G4double energy ) ;
79
82
84
86
87 void IntegralPAIxSection(G4double bg2, G4double Tmax) ;
88 void IntegralCherenkov(G4double bg2, G4double Tmax) ;
89 void IntegralPlasmon(G4double bg2, G4double Tmax) ;
90
91 void IntegralPAIdEdx(G4double bg2, G4double Tmax) ;
92
93
95
96
100
101 // Inline access functions
102
103
104 G4int GetIntervalNumber() const { return fIntervalNumber ; }
105 G4int GetBinPAI() const { return fPAIbin ; }
106
107 G4double GetNormalizationCof() const { return fNormalizationCof ; }
108
110 { return (*(*fMatSandiaMatrix)[i])[j]; }
111
112 G4PhysicsLogVector* GetPAIxscVector() const { return fPAIxscVector;}
113 G4PhysicsLogVector* GetPAIdEdxVector() const { return fPAIdEdxVector;}
114 G4PhysicsLogVector* GetPAIphotonVector() const { return fPAIphotonVector;}
115 G4PhysicsLogVector* GetPAIelectronVector() const { return fPAIelectronVector;}
116 G4PhysicsLogVector* GetChCosSqVector() const { return fChCosSqVector;}
117 G4PhysicsLogVector* GetChWidthVector() const { return fChWidthVector;}
118
119protected :
120
121private :
122
123 G4InitXscPAI & operator=(const G4InitXscPAI &right) = delete;
124 G4InitXscPAI(const G4InitXscPAI&) = delete;
125
126 // Local class constants
127
128 static const G4double fDelta ; // energy shift from interval border = 0.001
129 static const G4int fPAIbin;
130 static const G4double fSolidDensity; // ~the border between gases and solids
131
132 G4int fIntervalNumber; // The number of energy intervals
133 G4double fNormalizationCof; // Normalization cof for PhotoAbsorptionXsection
134 G4int fCurrentInterval;
135 G4int fIntervalTmax;
136 G4double fBetaGammaSq ; // (beta*gamma)^2
137 G4double fTmax;
138 G4double fDensity ; // Current density
139 G4double fElectronDensity ; // Current electron (number) density
140
141 // Arrays of Sandia coefficients
142
143 G4OrderedTable* fMatSandiaMatrix;
144 G4SandiaTable* fSandia;
145
146 // vectors of integral cross-sections
147
148 G4PhysicsLogVector* fPAIxscVector;
149 G4PhysicsLogVector* fPAIdEdxVector;
150 G4PhysicsLogVector* fPAIphotonVector;
151 G4PhysicsLogVector* fPAIelectronVector;
152 G4PhysicsLogVector* fChCosSqVector;
153 G4PhysicsLogVector* fChWidthVector;
154
155};
156
157#endif
158
159//
160//
161///////////////// end of G4InitXscPAI header file //////////////////////
double G4double
Definition: G4Types.hh:83
int G4int
Definition: G4Types.hh:85
G4double RutherfordIntegral(G4int intervalNumber, G4double limitLow, G4double limitHigh)
G4double GetMatSandiaMatrix(G4int i, G4int j) const
G4double GetPhotonLambda(G4double omega)
void IntegralCherenkov(G4double bg2, G4double Tmax)
void IntegralPAIxSection(G4double bg2, G4double Tmax)
G4PhysicsLogVector * GetPAIdEdxVector() const
G4PhysicsLogVector * GetPAIphotonVector() const
G4int GetBinPAI() const
G4double GetStepCerenkovLoss(G4double step)
G4double ModuleSqDielectricConst(G4int intervalNumber, G4double energy)
G4double DifPAIdEdx(G4double omega)
G4double GetNormalizationCof() const
G4double PAIdNdxCherenkov(G4double omega)
G4PhysicsLogVector * GetPAIelectronVector() const
G4double GetStepEnergyLoss(G4double step)
G4PhysicsLogVector * GetPAIxscVector() const
void IntegralPlasmon(G4double bg2, G4double Tmax)
G4double IntegralTerm(G4double omega)
G4double GetStepPlasmonLoss(G4double step)
G4int GetIntervalNumber() const
G4double ImPartDielectricConst(G4int intervalNumber, G4double energy)
G4double DifPAIxSection(G4double omega)
G4PhysicsLogVector * GetChCosSqVector() const
G4double RePartDielectricConst(G4double energy)
void IntegralPAIdEdx(G4double bg2, G4double Tmax)
G4PhysicsLogVector * GetChWidthVector() const
void KillCloseIntervals()
virtual ~G4InitXscPAI()
G4double PAIdNdxPlasmon(G4double omega)
void Normalisation()