source: trunk/source/processes/hadronic/models/binary_cascade/src/G4ProtonField.cc @ 967

Last change on this file since 967 was 819, checked in by garnier, 16 years ago

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27// -------------------------------------------------------------------
28//      GEANT 4 class implementation file
29//
30//      CERN, Geneva, Switzerland
31//
32//      File name:     G4ProtonField.cc
33//
34//      Author:        Alessandro Brunengo (Alessandro.Brunengo@ge.infn.it)
35//
36//      Creation date: 5 June 2000
37// -------------------------------------------------------------------
38#include "G4ProtonField.hh"
39#include "G4NucleiPropertiesTable.hh"
40#include "G4VNuclearDensity.hh"
41#include "G4FermiMomentum.hh"
42#include "G4V3DNucleus.hh"
43
44G4ProtonField::G4ProtonField(G4V3DNucleus * aNucleus) : 
45   G4VNuclearField(aNucleus), theDensity(theNucleus->GetNuclearDensity())
46{ 
47  theA = theNucleus->GetMassNumber();
48  theZ = theNucleus->GetCharge();
49  theBarrier = GetBarrier();
50  theRadius = 2.*theNucleus->GetOuterRadius();
51  theFermi.Init(theA, theZ);
52  G4double aR=0;
53  while(aR<theRadius)
54  {
55    G4ThreeVector aPosition(0,0,aR);
56    G4double density = GetDensity(aPosition);
57    G4double fermiMom = GetFermiMomentum(density);
58    theFermiMomBuffer.push_back(fermiMom);
59    aR+=0.3*fermi;
60  }
61  {
62  G4ThreeVector aPosition(0,0,theRadius);
63  G4double density = GetDensity(aPosition);
64  G4double fermiMom = GetFermiMomentum(density);
65  theFermiMomBuffer.push_back(fermiMom); 
66  }
67  {
68  G4ThreeVector aPosition(0,0,theRadius+0.001*fermi);
69  theFermiMomBuffer.push_back(0); 
70  }
71  {
72  G4ThreeVector aPosition(0,0,1.*m);
73  theFermiMomBuffer.push_back(0); 
74  }
75}
76
77
78G4ProtonField::~G4ProtonField()
79{ }
80
81
82const G4ProtonField & G4ProtonField::operator=(const G4ProtonField &)
83{
84  throw G4HadronicException(__FILE__, __LINE__, "G4ProtonField::operator= meant not to be accessible");
85  return *this;
86}
87
88
89G4int G4ProtonField::operator==(const G4ProtonField &) const
90{
91  throw G4HadronicException(__FILE__, __LINE__, "G4ProtonField::operator== meant not to be accessible");
92  return 0;
93}
94
95
96G4int G4ProtonField::operator!=(const G4ProtonField &) const
97{
98  throw G4HadronicException(__FILE__, __LINE__, "G4ProtonField::operator!= meant not to be accessible");
99  return 1;
100}
101
102
103G4double G4ProtonField::GetField(const G4ThreeVector & aPosition)
104{
105//G4cout << " Fermi Potential " << (fermiMom*fermiMom)/(2*proton_mass_c2) <<G4endl;
106  G4double x = aPosition.mag();
107  G4int index = static_cast<G4int>(x/(0.3*fermi) );
108  if(index+2>static_cast<G4int>(theFermiMomBuffer.size())) return theFermiMomBuffer.back();
109  G4double y1 = theFermiMomBuffer[index];
110  G4double y2 = theFermiMomBuffer[index+1];
111  G4double x1 = (0.3*fermi)*index;
112  G4double x2 = (0.3*fermi)*(index+1);
113  G4double fermiMom = y1 + (x-x1)*(y2-y1)/(x2-x1);
114  G4double y = -1*(fermiMom*fermiMom)/(2*proton_mass_c2)+theBarrier;
115//  G4cout <<" Protonfield test "<<index<<" "<< x1<<" "<<y1<<" "<<x2<<" "<<y2<<" "<<x<<" "<<y<<" "<<theBarrier<<G4endl;
116  return y;
117}
118
119
120
121G4double G4ProtonField::GetBarrier()
122{
123  G4double coulombBarrier = (1.44/1.14) * MeV * theZ / (1.0 + std::pow(theA,1./3.));
124//GF   G4double bindingEnergy = G4NucleiPropertiesTable::GetBindingEnergy(Z, A);
125  G4double bindingEnergy =0;
126/*
127 *   G4cout << " coulombBarrier/bindingEnergy : "
128 *       << coulombBarrier << " /" << bindingEnergy << G4endl;
129 */
130  return bindingEnergy/theA+coulombBarrier;
131}
132
133
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