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G4FermiFragment.hh
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26 //
27 // FermiBreakUp de-excitation model
28 // by V. Ivanchenko (July 2016)
29 //
30 
31 #ifndef G4FermiFragment_h
32 #define G4FermiFragment_h 1
33 
34 #include "globals.hh"
35 #include "G4FragmentVector.hh"
36 #include "G4CoulombBarrier.hh"
37 
39 {
40 public:
41 
42  explicit G4FermiFragment(G4int anA, G4int aZ, G4int sp, G4double exc);
43 
45 
46  inline G4int GetA(void) const
47  {
48  return A;
49  }
50 
51  inline G4int GetZ(void) const
52  {
53  return Z;
54  }
55 
56  inline G4int GetSpin(void) const
57  {
58  return spin;
59  }
60 
61  inline G4double GetExcitationEnergy(void) const
62  {
63  return excitEnergy;
64  }
65 
66  inline G4double GetFragmentMass(void) const
67  {
68  return fragmentMass;
69  }
70 
71  inline G4double GetTotalEnergy(void) const
72  {
73  return (fragmentMass + excitEnergy);
74  }
75 
76  inline G4double GetCoulombBarrier(G4int Ares, G4int Zres, G4double Eex) const
77  {
78  return cBarrier->GetCoulombBarrier(Ares, Zres, Eex);
79  }
80 
81  inline G4bool operator==(const G4FermiFragment &right) const
82  {
83  return (A == right.A && Z == right.Z &&
84  std::abs(excitEnergy - right.excitEnergy) < 0.0001);
85  }
86 
87 private:
88 
91 
93 
97 
100  G4bool operator!=(const G4FermiFragment &right) const;
101 };
102 
103 
104 #endif
105 
106