source: trunk/source/processes/hadronic/cross_sections/src/G4ProtonInelasticCrossSection.cc @ 846

Last change on this file since 846 was 819, checked in by garnier, 16 years ago

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25//
26// By JPW, working, but to be cleaned up. @@@
27// G.Folger, 29-sept-2006: extend to 1TeV, using a constant above 20GeV
28// 22 Dec 2006 - DHW added isotope dependence
29//
30
31#include "G4ProtonInelasticCrossSection.hh"
32#include "globals.hh"
33
34
35G4double G4ProtonInelasticCrossSection::
36GetCrossSection(const G4DynamicParticle* aPart, 
37                const G4Element* anEle, G4double /*aTemperature*/)
38{
39  G4int nIso = anEle->GetNumberOfIsotopes();
40  G4double KE = aPart->GetKineticEnergy(); 
41  G4double cross_section = 0;
42 
43  if (nIso) {
44    G4double psig;
45    G4IsotopeVector* isoVector = anEle->GetIsotopeVector();
46    G4double* abundVector = anEle->GetRelativeAbundanceVector();
47    G4double ZZ;
48    G4double AA;
49 
50    for (G4int i = 0; i < nIso; i++) {
51      ZZ = G4double( (*isoVector)[i]->GetZ() );
52      AA = G4double( (*isoVector)[i]->GetN() );
53      psig = GetCrossSection(KE, AA, ZZ);
54      cross_section += psig*abundVector[i];
55    }
56 
57  } else {
58    cross_section = GetCrossSection(KE, anEle->GetN(), anEle->GetZ());
59  }
60
61  return cross_section;
62}
63
64   
65G4double G4ProtonInelasticCrossSection::
66GetCrossSection(G4double kineticEnergy, G4double atomicNumber, G4double nOfProtons)
67{   
68  if (kineticEnergy > 19.9*GeV ) 
69  { // constant cross section above ~20GeV.
70    return  GetCrossSection(19.8*GeV,atomicNumber,nOfProtons);
71  } 
72  G4double nOfNeutrons = atomicNumber-nOfProtons;
73  kineticEnergy /=GeV;
74  G4double a = atomicNumber;
75  const G4double nuleonRadius=1.36E-15;
76  const G4double pi=3.14159265;
77  G4double fac=pi*nuleonRadius*nuleonRadius;
78  G4double b0=2.247-0.915*(1-std::pow(a,-0.3333));
79  G4double fac1=b0*(1-std::pow(a,-0.3333));
80  G4double fac2=1.;
81  if(nOfNeutrons>1.5) fac2=std::log((nOfNeutrons));
82  G4double crossSection = 1E31*fac*fac2*(1+std::pow(a,0.3333)-fac1);
83
84  // high energy correction
85
86  crossSection = (1-0.15*std::exp(-kineticEnergy))*crossSection/(1.00-0.0007*a);
87  // first try on low energies: rise
88
89  G4double ff1= 0.70-0.002*a;  // slope of the drop at medium energies.
90  G4double ff2= 1.00+1/a;  // start of the slope.
91  G4double ff3= 0.8+18/a-0.002*a; // stephight
92  fac = 1.0;
93  if (kineticEnergy > DBL_MIN) 
94     fac= 1.0 - (1.0/(1+std::exp(-8*ff1*(std::log10(kineticEnergy)+1.37*ff2))));
95  crossSection = crossSection*(1+ff3*fac);
96
97  // low energy return to zero
98
99  ff1=1.-1/a-0.001*a; // slope of the rise
100  ff2=1.17-2.7/a-0.0014*a; // start of the rise
101  fac = 0.0;
102  if (kineticEnergy > DBL_MIN) {
103    fac=-8.*ff1*(std::log10(kineticEnergy)+2.0*ff2);
104    fac=1/(1+std::exp(fac));
105  }
106  crossSection = crossSection*fac;
107  return crossSection*millibarn;
108}
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