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G4HETCFragment.hh
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26 // $Id: G4HETCFragment.hh 69581 2013-05-08 14:02:06Z gcosmo $
27 //
28 // by V. Lara
29 //
30 // Modified:
31 // 20.08.2010 V.Ivanchenko added G4Pow and G4PreCompoundParameters pointers
32 // use int Z and A and cleanup
33 
34 #ifndef G4HETCFragment_h
35 #define G4HETCFragment_h 1
36 
38 #include "Randomize.hh"
39 
41 {
42 public:
43 
45  G4VCoulombBarrier * aCoulombBarrier);
46 
47  virtual ~G4HETCFragment();
48 
49  G4double CalcEmissionProbability(const G4Fragment & aFragment);
50 
51 protected:
52 
53  virtual G4double K(const G4Fragment & aFragment) = 0;
54 
55  virtual G4double GetSpinFactor() = 0;
56  virtual G4double GetAlpha() = 0;
57  virtual G4double GetBeta() = 0;
58 
59  inline G4double BetaRand(const G4int N, const G4int L) const;
60 
61 private:
62 
63  // This method performs integration for probability function over
64  // fragment kinetic energy
65  G4double IntegrateEmissionProbability(const G4double & Low,
66  const G4double & Up,
67  const G4Fragment & aFragment);
68 
71  const G4HETCFragment&
72  operator= (const G4HETCFragment &right);
73  G4int operator==(const G4HETCFragment &right) const;
74  G4int operator!=(const G4HETCFragment &right) const;
75 
76  G4double r2norm;
77 };
78 
80 BetaRand(const G4int N, const G4int L) const
81 {
82  G4double Y1 = G4RandGamma::shoot(N,1);
83  G4double Y2 = G4RandGamma::shoot(L,1);
84 
85  return Y1/(Y1+Y2);
86 }
87 
88 #endif
virtual G4double GetBeta()=0
ThreeVector shoot(const G4int Ap, const G4int Af)
virtual G4double GetAlpha()=0
G4double BetaRand(const G4int N, const G4int L) const
int G4int
Definition: G4Types.hh:78
G4double CalcEmissionProbability(const G4Fragment &aFragment)
virtual G4double GetSpinFactor()=0
virtual ~G4HETCFragment()
virtual G4double K(const G4Fragment &aFragment)=0
**D E S C R I P T I O N
double G4double
Definition: G4Types.hh:76