source: trunk/source/processes/hadronic/models/de_excitation/evaporation/include/G4NeutronEvaporationProbability.hh @ 962

Last change on this file since 962 was 962, checked in by garnier, 15 years ago

update processes

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26//J.M. Quesada (August2008). Based on:
27//
28// Hadronic Process: Nuclear De-excitations
29// by V. Lara (Oct 1998)
30//
31
32#ifndef G4NeutronEvaporationProbability_h
33#define G4NeutronEvaporationProbability_h 1
34
35
36#include "G4EvaporationProbability.hh"
37#include "G4NeutronCoulombBarrier.hh"
38
39class G4NeutronEvaporationProbability : public G4EvaporationProbability
40{
41public:
42 
43  G4NeutronEvaporationProbability();
44               
45  ~G4NeutronEvaporationProbability() {}
46private: 
47 
48  G4NeutronEvaporationProbability(const G4NeutronEvaporationProbability &right);
49
50  const G4NeutronEvaporationProbability & operator=(const G4NeutronEvaporationProbability &right);
51  G4bool operator==(const G4NeutronEvaporationProbability &right) const;
52  G4bool operator!=(const G4NeutronEvaporationProbability &right) const;
53
54private:
55
56  virtual G4double CrossSection(const  G4Fragment & fragment, const  G4double K);
57
58  G4double GetOpt12(const G4double K);
59  G4double GetOpt34(const G4double K);
60
61 virtual G4double CalcAlphaParam(const G4Fragment & fragment);
62 
63 virtual G4double CalcBetaParam(const G4Fragment & fragment);
64 
65 
66//data members
67
68      G4NeutronCoulombBarrier theCoulombBarrier; 
69
70      G4double ResidualA;
71      G4double ResidualZ; 
72      G4double theA;
73      G4double theZ;
74      G4double ResidualAthrd;
75      G4double FragmentA;
76      G4double FragmentAthrd;
77
78
79
80
81};
82
83
84#endif
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