source: trunk/source/processes/hadronic/models/pre_equilibrium/exciton_model/include/G4PreCompoundIon.hh @ 1340

Last change on this file since 1340 was 1340, checked in by garnier, 14 years ago

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25//
26// $Id: G4PreCompoundIon.hh,v 1.8 2010/08/28 15:16:55 vnivanch Exp $
27// GEANT4 tag $Name: geant4-09-03-ref-09 $
28//
29// J. M. Quesada (August 2008). 
30// Based  on previous work by V. Lara
31//
32// Modified:
33// 20.08.2010 V.Ivanchenko added int Z and A and cleanup; added
34//                        G4ParticleDefinition to constructor,
35//                        moved constructor and destructor to source,
36//                        added inline methods
37
38#ifndef G4PreCompoundIon_h
39#define G4PreCompoundIon_h 1
40
41#include "G4PreCompoundFragment.hh"
42
43class G4PreCompoundIon : public G4PreCompoundFragment
44{
45public:
46
47  G4PreCompoundIon(const G4ParticleDefinition*,
48                   G4VCoulombBarrier * aCoulombBarrier);
49 
50  virtual ~G4PreCompoundIon();
51
52protected:
53         
54  virtual G4double
55  ProbabilityDistributionFunction(G4double eKin, 
56                                  const G4Fragment& aFragment);
57
58  virtual G4double CrossSection(G4double ekin) = 0; 
59
60  virtual G4double
61  GetRj(G4int NumberParticles, G4int NumberCharged) = 0; 
62
63  virtual G4double FactorialFactor(G4int N, G4int P) = 0;
64
65  virtual G4double CoalescenceFactor(G4int A) = 0; 
66
67  virtual G4double GetAlpha() = 0;
68
69  inline G4double GetBeta();
70
71  inline G4double GetOpt0(G4double ekin);
72
73private:
74
75  // default constructor
76  G4PreCompoundIon();
77  // operators
78  G4PreCompoundIon(const G4PreCompoundIon &right);
79  const G4PreCompoundIon& 
80  operator= (const G4PreCompoundIon &right);
81  G4int operator==(const G4PreCompoundIon &right) const;
82  G4int operator!=(const G4PreCompoundIon &right) const;   
83
84  G4double fact;
85};
86
87inline G4double G4PreCompoundIon::GetBeta()
88{
89  return -GetCoulombBarrier();
90}
91
92// *********************** OPT=0 : Dostrovski's cross section  ***************
93inline G4double G4PreCompoundIon::GetOpt0(G4double K)
94{
95  G4double r0 = theParameters->Getr0()*ResidualA13();
96  // cross section is now given in mb (r0 is in mm) for the sake of consistency
97  //with the rest of the options
98  return 1.e+25*CLHEP::pi*r0*r0*ResidualA13()*GetAlpha()*(1.+GetBeta()/K);
99}
100
101#endif
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