Geant4  9.6.p02
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G4HETCFragment.cc
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26 // $Id$
27 //
28 // by V. Lara
29 //
30 // Modified:
31 // 23.08.2010 V.Ivanchenko general cleanup, move constructor and destructor
32 // the source, use G4Pow
33 
34 #include "G4HETCFragment.hh"
35 #include "G4PhysicalConstants.hh"
37 
38 G4HETCFragment::
39 G4HETCFragment(const G4ParticleDefinition* part,
40  G4VCoulombBarrier* aCoulombBarrier)
41  : G4VPreCompoundFragment(part, aCoulombBarrier)
42 {
44  r2norm = r0*r0/(CLHEP::pi*CLHEP::hbarc*CLHEP::hbarc*CLHEP::hbarc);
45 }
46 
48 {}
49 
52 {
53  if (GetEnergyThreshold() <= 0.0)
54  {
56  return 0.0;
57  }
58  // Coulomb barrier is the lower limit
59  // of integration over kinetic energy
60  G4double LowerLimit = theCoulombBarrier;
61 
62  // Excitation energy of nucleus after fragment emission is the upper limit
63  // of integration over kinetic energy
64  G4double UpperLimit = GetMaximalKineticEnergy();
65 
67  IntegrateEmissionProbability(LowerLimit,UpperLimit,aFragment);
68 
70 }
71 
72 G4double G4HETCFragment::
73 IntegrateEmissionProbability(const G4double & Low, const G4double & Up,
74  const G4Fragment & aFragment)
75 {
76 
77  if ( !IsItPossible(aFragment) ) { return 0.0; }
78 
79  G4double U = aFragment.GetExcitationEnergy();
80 
81  G4int P = aFragment.GetNumberOfParticles();
82  G4int H = aFragment.GetNumberOfHoles();
83  G4int N = P + H;
84  G4int Pb = P - GetA();
85  G4int Nb = Pb + H;
86  if (Nb <= 0.0) { return 0.0; }
87  G4double ga = (6.0/pi2)*aFragment.GetA()*theParameters->GetLevelDensity();
89 
90  G4double A = G4double(P*P+H*H+P-3*H)/(4.0*ga);
91  G4double Ab = G4double(Pb*Pb+H*H+Pb-3*H)/(4.0*gb);
92  U = std::max(U-A,0.0);
93  if (U <= 0.0) { return 0.0; }
94 
95  G4int Pf = P;
96  G4int Hf = H;
97  G4int Nf = N-1;
98  for (G4int i = 1; i < GetA(); ++i)
99  {
100  Pf *= (P-i);
101  Hf *= (H-i);
102  Nf *= (N-1-i);
103  }
104 
105  G4double X = std::max(Up - Ab + GetBeta(),0.0);
106  G4double Y = std::max(Up - Ab - Low, 0.0);
107 
108  G4double Probability = r2norm*GetSpinFactor()*GetReducedMass()*GetAlpha()
109  *g4pow->Z23(GetRestA())*Pf*Hf*Nf*K(aFragment)*(X/Nb - Y/(Nb+1))
110  *U*g4pow->powN(gb*Y,Nb)/g4pow->powN(ga*U,N);
111 
112  // G4double Probability = GetSpinFactor()/(pi*hbarc*hbarc*hbarc)
113  // * GetReducedMass() * GetAlpha() *
114  // r0 * r0 * std::pow->Z23(GetRestA())/std::pow->pow(U,G4double(N-1)) *
115  // (std::pow->(gb,Nb)/std::pow(ga,N)) * Pf * Hf * Nf * K(aFragment) *
116  // std::pow(Y,Nb) * (X/Nb - Y/(Nb+1));
117 
118  return Probability;
119 }