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G4StatMFParameters.hh
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27 // $Id$
28 //
29 // Hadronic Process: Nuclear De-excitations
30 // by V. Lara
31 
32 #ifndef G4StatMFParameters_h
33 #define G4StatMFParameters_h 1
34 
35 #include "globals.hh"
36 
38 {
39 private:
40  static G4StatMFParameters theStatMFParameters;
41 
42  // +----------------------+
43  // | Constant Parameters: |
44  // +----------------------+
45  // Kappa is used for calculate volume V_f for translational motion of fragments
46  static const G4double _Kappa;
47  // KappaCoulomb is used for calculate Coulomb term energy
48  static const G4double _KappaCoulomb;
49  // Inverse level density
50  static const G4double _Epsilon0;
51  // Bethe-Weizsacker coefficients
52  static const G4double _E0;
53  static const G4double _Beta0;
54  static const G4double _Gamma0;
55  // Critical temperature (for liquid-gas phase transitions)
56  static const G4double _CriticalTemp;
57  // Nuclear radius
58  static const G4double _r0;
59 
60 
61  // default constructor
63  {}
64 
65 
66 public:
67 
69 
70  static G4StatMFParameters * GetAddress();
71 
72  static G4double GetKappa() { return _Kappa; }
73 
74  static G4double GetKappaCoulomb() { return _KappaCoulomb; }
75 
76  static G4double GetEpsilon0() { return _Epsilon0; }
77 
78  static G4double GetE0() { return _E0; }
79 
80  static G4double GetBeta0() { return _Beta0; }
81 
82  static G4double GetGamma0() { return _Gamma0; }
83 
84  static G4double GetCriticalTemp() { return _CriticalTemp; }
85 
86  static G4double Getr0() { return _r0; }
87 
88  static G4double Beta(const G4double T);
89 
90  static G4double DBetaDT(const G4double T);
91 
93 };
94 
95 #endif