source: trunk/source/processes/hadronic/models/pre_equilibrium/exciton_model/src/G4HETCNeutron.cc @ 1358

Last change on this file since 1358 was 1340, checked in by garnier, 14 years ago

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26// $Id: G4HETCNeutron.cc,v 1.3 2010/08/28 15:16:55 vnivanch Exp $
27// GEANT4 tag $Name: geant4-09-03-ref-09 $
28//
29// by V. Lara
30//
31// Modified:
32// 23.08.2010 V.Ivanchenko general cleanup, move constructor and destructor
33//            the source, use G4Pow
34
35#include "G4HETCNeutron.hh"
36#include "G4Neutron.hh"
37
38G4HETCNeutron::G4HETCNeutron() 
39  : G4HETCFragment(G4Neutron::Neutron(), &theNeutronCoulombBarrier)
40{}
41
42G4HETCNeutron::~G4HETCNeutron() 
43{}
44
45G4double G4HETCNeutron::GetAlpha()
46{
47  return 0.76+2.2/g4pow->Z13(GetRestA());
48}
49 
50G4double G4HETCNeutron::GetBeta() 
51{
52  return (2.12/g4pow->Z23(GetRestA())-0.05)*MeV/GetAlpha();
53}
54
55G4double G4HETCNeutron::GetSpinFactor()
56{
57  // (2s+1)
58  return 2.0;
59}
60 
61G4double G4HETCNeutron::K(const G4Fragment & aFragment)
62{
63  // Number of protons in emitted fragment
64  G4int Pa = GetZ();
65  // Number of neutrons in emitted fragment
66  G4int Na = GetA() - Pa;
67
68  G4int TargetZ = GetRestZ();
69  G4int TargetA = GetRestA();
70  G4double r = G4double(TargetZ)/G4double(TargetA);
71 
72  G4int P = aFragment.GetNumberOfParticles();
73  G4int H = aFragment.GetNumberOfHoles();
74 
75  G4double result = 0.0;
76  if (P > 0)
77    {
78      result = (H + Na/(1.0-r))/P;
79    }
80 
81  return std::max(0.0,result);
82}
83
84G4double G4HETCNeutron::GetKineticEnergy(const G4Fragment & aFragment)
85{
86  G4int H = aFragment.GetNumberOfHoles();
87  G4int Pb = aFragment.GetNumberOfParticles();
88  G4int Nb = Pb + H;
89  G4double g0 = (6.0/pi2)*aFragment.GetA_asInt()*theParameters->GetLevelDensity();
90 
91  G4double Ab = std::max(0.0,G4double(Pb*Pb+H*H+Pb-3*H)/(4.0*g0));
92  G4double Emax = GetMaximalKineticEnergy() - Ab;
93 
94  G4double cut = GetBeta() / (GetBeta()+Emax/G4double(Nb+1));
95  G4double x(0.0);
96  if (G4UniformRand() <= cut)
97    {
98      x = BetaRand(Nb,1);
99    }
100  else 
101    {
102      x = BetaRand(Nb,2);
103    }
104
105  return Emax * (1.0 - x);
106}
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