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Toolkit for the simulation of the passage of particles through matter
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G4StatMFMacroChemicalPotential.hh
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27//
28// Hadronic Process: Nuclear De-excitations
29// by V. Lara
30
31#ifndef G4StatMFMacroChemicalPotential_h
32#define G4StatMFMacroChemicalPotential_h 1
33
34#include <vector>
35
36#include "G4StatMFParameters.hh"
39#include "G4Solver.hh"
40
41
42
44
45public:
46
48 const G4double kappa,
49 const G4double temp,
50 std::vector<G4VStatMFMacroCluster*> * ClusterVector) :
51 theA(anA),
52 theZ(aZ),
53 _Kappa(kappa),
54 _MeanMultiplicity(0.0),
55 _MeanTemperature(temp),
56 _ChemPotentialMu(0.0),
57 _ChemPotentialNu(0.0),
58 _theClusters(ClusterVector)
59 {};
60
62
64 { return (theZ - this->CalcMeanZ(nu))/theZ; }
65
66private:
67 // Default constructor
69
70 // copy constructor
72
73
74 // operators
76 G4bool operator==(const G4StatMFMacroChemicalPotential & right) const;
77 G4bool operator!=(const G4StatMFMacroChemicalPotential & right) const;
78
79public:
80
81 G4double GetMeanMultiplicity(void) const {return _MeanMultiplicity;}
82
83 G4double GetChemicalPotentialMu(void) const {return _ChemPotentialMu;}
84
85 G4double GetChemicalPotentialNu(void) const {return _ChemPotentialNu;}
86
88
89private:
90
91 G4double CalcMeanZ(const G4double nu);
92
93 void CalcChemicalPotentialMu(const G4double nu);
94
95private:
96
97 G4double theA;
98
99 G4double theZ;
100
101 G4double _Kappa;
102
103 G4double _MeanMultiplicity;
104
105 G4double _MeanTemperature;
106
107 G4double _ChemPotentialMu;
108
109 G4double _ChemPotentialNu;
110
111 std::vector<G4VStatMFMacroCluster*> * _theClusters;
112
113
114};
115#endif
double G4double
Definition G4Types.hh:83
bool G4bool
Definition G4Types.hh:86
G4StatMFMacroChemicalPotential(const G4double anA, const G4double aZ, const G4double kappa, const G4double temp, std::vector< G4VStatMFMacroCluster * > *ClusterVector)