source: trunk/source/processes/hadronic/cross_sections/src/G4IonsKoxCrossSection.cc @ 1228

Last change on this file since 1228 was 1055, checked in by garnier, 15 years ago

maj sur la beta de geant 4.9.3

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25//
26// 18-Sep-2003 First version is written by T. Koi
27// 10-Nov-2003 Bug fix at Cal. ke_per_n and D T. Koi
28// 12-Nov-2003 Add energy check at lower side T. Koi
29// 26-Dec-2006 Add isotope dependence D. Wright
30
31#include "G4IonsKoxCrossSection.hh"
32#include "G4ParticleTable.hh"
33#include "G4IonTable.hh"
34
35G4double G4IonsKoxCrossSection::
36GetIsoZACrossSection(const G4DynamicParticle* aParticle, G4double ZZ, 
37                     G4double AA, G4double /*temperature*/)
38{
39   G4double xsection = 0.0;
40
41   G4int Ap = aParticle->GetDefinition()->GetBaryonNumber();
42   G4int Zp = int ( aParticle->GetDefinition()->GetPDGCharge() / eplus + 0.5); 
43   G4double ke_per_N = aParticle->GetKineticEnergy() / Ap;
44
45// Apply energy check, if less than lower limit then 0 value is returned
46   // if (  ke_per_N < lowerLimit ) return xsection;
47
48   G4int At = int (AA + 0.5);
49   G4int Zt = int (ZZ + 0.5 ); 
50
51   G4double one_third = 1.0 / 3.0;
52
53   G4double cubicrAt = std::pow ( G4double(At) , G4double(one_third) ); 
54   G4double cubicrAp = std::pow ( G4double(Ap) , G4double(one_third) ); 
55
56
57   G4double Bc = Zt * Zp / ( ( rc / fermi ) * (  cubicrAp + cubicrAt ) );   // rc divide fermi
58   G4double targ_mass = G4ParticleTable::GetParticleTable()->GetIonTable()->GetIonMass( Zt , At ); 
59   G4double proj_mass = aParticle->GetMass(); 
60   G4double proj_momentum = aParticle->GetMomentum().mag(); 
61
62   G4double Ecm = calEcm ( proj_mass , targ_mass , proj_momentum ); 
63   if( Ecm <= Bc) return xsection;
64
65   G4double Rvol = r0 * (  cubicrAp + cubicrAt );
66
67//   G4double ke_per_N = aParticle->GetKineticEnergy() / Ap;
68   G4double c = calCeValue ( ke_per_N / MeV  ); 
69
70   G4double a = 1.85;
71   G4double Rsurf = r0 * ( a * cubicrAp * cubicrAt / ( cubicrAp + cubicrAt ) - c); 
72   G4double D = 5.0 * ( At - 2 * Zt ) * Zp / ( Ap * At );
73   Rsurf = Rsurf + D * fermi;  // multiply D by fermi
74
75   G4double Rint = Rvol + Rsurf;
76
77   xsection = pi * Rint * Rint * ( 1 - Bc / ( Ecm / MeV ) );
78 
79   return xsection; 
80}
81
82G4double G4IonsKoxCrossSection::
83GetCrossSection(const G4DynamicParticle* aParticle, 
84                const G4Element* anElement, G4double temperature)
85{
86  G4int nIso = anElement->GetNumberOfIsotopes();
87  G4double xsection = 0;
88
89  if (nIso) {
90    G4double sig;
91    G4IsotopeVector* isoVector = anElement->GetIsotopeVector();
92    G4double* abundVector = anElement->GetRelativeAbundanceVector();
93    G4double ZZ;
94    G4double AA;
95     
96    for (G4int i = 0; i < nIso; i++) {
97      ZZ = G4double( (*isoVector)[i]->GetZ() );
98      AA = G4double( (*isoVector)[i]->GetN() );
99      sig = GetIsoZACrossSection(aParticle, ZZ, AA, temperature);
100      xsection += sig*abundVector[i];
101    }
102   
103  } else {
104    xsection =
105      GetIsoZACrossSection(aParticle, anElement->GetZ(), anElement->GetN(),
106                           temperature);
107  }
108   
109  return xsection;
110}
111
112
113G4double G4IonsKoxCrossSection::calEcm ( G4double mp , G4double mt , G4double Plab )
114{
115   G4double Elab = std::sqrt ( mp * mp + Plab * Plab );
116   G4double Ecm = std::sqrt ( mp * mp + mt * mt + 2 * Elab * mt );
117   G4double Pcm = Plab * mt / Ecm;
118   G4double KEcm = std::sqrt ( Pcm * Pcm + mp * mp ) - mp;
119   return KEcm;
120}
121
122
123G4double G4IonsKoxCrossSection::calCeValue( const G4double ke )
124{
125   // Calculate c value
126   // This value is indepenent from projectile and target particle
127   // ke is projectile kinetic energy per nucleon in the Lab system with MeV unit
128   // fitting function is made by T. Koi
129   // There are no data below 30 MeV/n in Kox et al.,
130
131   G4double Ce; 
132   G4double log10_ke = std::log10 ( ke );   
133   if ( log10_ke > 1.5 ) 
134   {
135      Ce = - 10.0 / std::pow ( G4double(log10_ke) , G4double(5) ) + 2.0;
136   }
137   else
138   {
139      Ce = ( - 10.0 / std::pow ( G4double(1.5) , G4double(5) ) + 2.0 ) / std::pow ( G4double(1.5) , G4double(3) ) * std::pow ( G4double(log10_ke) , G4double(3) );
140
141   }
142   return Ce;
143}
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