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G4StatMFMacroTemperature.hh
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27 // $Id$
28 //
29 // Hadronic Process: Nuclear De-excitations
30 // by V. Lara
31 
32 #ifndef G4StatMFMacroTemperature_h
33 #define G4StatMFMacroTemperature_h 1
34 
35 #include "G4StatMFParameters.hh"
36 #include "G4VStatMFMacroCluster.hh"
38 #include "G4Solver.hh"
39 
40 
41 
43 
44 public:
45 
46  G4StatMFMacroTemperature(const G4double anA, const G4double aZ,
47  const G4double ExEnergy, const G4double FreeE0,
48  const G4double kappa,
49  std::vector<G4VStatMFMacroCluster*> * ClusterVector);
50 
52 
54  { return (_ExEnergy - this->FragsExcitEnergy(T))/_ExEnergy; }
55 
56 private:
57 
58  // Default constructor
60 
61  // copy constructor
63 
64 
65  // operators
67  G4bool operator==(const G4StatMFMacroTemperature & right) const;
68  G4bool operator!=(const G4StatMFMacroTemperature & right) const;
69 
70 public:
71 
72  inline G4double GetMeanMultiplicity(void) const {return _MeanMultiplicity;}
73 
74  inline G4double GetChemicalPotentialMu(void) const {return _ChemPotentialMu;}
75 
76  inline G4double GetChemicalPotentialNu(void) const {return _ChemPotentialNu;}
77 
78  inline G4double GetTemperature(void) const {return _MeanTemperature;}
79 
80  inline G4double GetEntropy(void) const {return _MeanEntropy;}
81 
83 
84 private:
85 
86  G4double FragsExcitEnergy(const G4double T);
87 
88  void CalcChemicalPotentialNu(const G4double T);
89 
90 private:
91 
92  G4double theA;
93 
94  G4double theZ;
95 
96  G4double _ExEnergy;
97 
98  G4double _FreeInternalE0;
99 
100  G4double _Kappa;
101 
102  G4double _MeanMultiplicity;
103 
104  G4double _MeanTemperature;
105 
106  G4double _ChemPotentialMu;
107 
108  G4double _ChemPotentialNu;
109 
110  G4double _MeanEntropy;
111 
112  std::vector<G4VStatMFMacroCluster*> * _theClusters;
113 
114 
115 };
116 #endif