Geant4 Cross Reference |
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Lara (Oct 1998) 31 // by V. Lara (Oct 1998) 29 // 32 // 30 // 17.11.2010 V.Ivanchenko cleanup and add usa 33 // 17.11.2010 V.Ivanchenko cleanup and add usage of G4Pow 31 // 21.03.2013 V.Ivanchenko redesign parameters << 32 34 33 #include "G4FissionBarrier.hh" 35 #include "G4FissionBarrier.hh" 34 #include "G4CameronShellPlusPairingCorrections << 35 #include "G4NuclearLevelData.hh" << 36 #include "G4ShellCorrection.hh" << 37 #include "G4SystemOfUnits.hh" << 38 #include "G4Pow.hh" 36 #include "G4Pow.hh" 39 37 40 G4FissionBarrier::G4FissionBarrier() 38 G4FissionBarrier::G4FissionBarrier() 41 { << 39 {} 42 SPtr = G4NuclearLevelData::GetInstance()->Ge << 43 ->GetCameronShellPlusPairingCorrections(); << 44 } << 45 40 46 G4FissionBarrier::~G4FissionBarrier() 41 G4FissionBarrier::~G4FissionBarrier() 47 {} 42 {} 48 43 49 G4double 44 G4double 50 G4FissionBarrier::FissionBarrier(G4int A, G4in << 45 G4FissionBarrier::FissionBarrier(G4int A, G4int Z, G4double U) 51 // Compute fission barrier according with Ba 46 // Compute fission barrier according with Barashenkov's 52 // prescription for A >= 65 47 // prescription for A >= 65 53 { 48 { 54 static const G4double blimit = 100.0*CLHEP:: << 49 if (A >= 65) { 55 return (A >= 65) ? BarashenkovFissionBarrier << 50 return BarashenkovFissionBarrier(A,Z)/(1.0 + std::sqrt(U/(2.0*A))); 56 /(1.0 + std::sqrt(U/(G4double)(2*A))) : bl << 51 } else { return 100.0*GeV; } 57 } 52 } 58 53 59 G4double 54 G4double 60 G4FissionBarrier::BarashenkovFissionBarrier(G4 << 55 G4FissionBarrier::BarashenkovFissionBarrier(G4int A, G4int Z) 61 // Calculates Fission Barrier heights 56 // Calculates Fission Barrier heights 62 { 57 { 63 // Liquid drop model parameters for 58 // Liquid drop model parameters for 64 // surface energy of a spherical nucleus 59 // surface energy of a spherical nucleus 65 static const G4double aSurf = 17.9439*CLHEP: << 60 const G4double aSurf = 17.9439*MeV; 66 // and coulomb energy 61 // and coulomb energy 67 static const G4double aCoul = 0.7053*CLHEP:: << 62 const G4double aCoul = 0.7053*MeV; 68 static const G4double k = 1.7826; << 63 const G4double k = 1.7826; 69 G4int N = A - Z; 64 G4int N = A - Z; 70 65 71 // fissibility parameter 66 // fissibility parameter 72 G4double x = (aCoul/(2.0*aSurf))*(Z*Z)/stati 67 G4double x = (aCoul/(2.0*aSurf))*(Z*Z)/static_cast<G4double>(A); 73 x /= (1.0 - k*(N-Z)*(N-Z)/static_cast<G4doub 68 x /= (1.0 - k*(N-Z)*(N-Z)/static_cast<G4double>(A*A)); 74 69 75 // Liquid drop model part of Fission Barrier 70 // Liquid drop model part of Fission Barrier 76 G4double BF0 = aSurf*G4Pow::GetInstance()->Z 71 G4double BF0 = aSurf*G4Pow::GetInstance()->Z23(A); 77 if (x <= 2./3.) { BF0 *= 0.38*(0.75 - x); } << 72 if (x <= 2./3.) { BF0 *= 0.38*(3./4.-x); } 78 else { BF0 *= 0.83*(1. - x)*(1. - x)*(1. - x 73 else { BF0 *= 0.83*(1. - x)*(1. - x)*(1. - x); } 79 74 80 G4int d = N - 2*(N/2) + Z - 2*(Z/2); << 75 // 81 << 76 G4double D = 1.248*MeV; 82 G4double res = 0.0; << 77 D *= (N - 2*(N/2) + Z - 2*(Z/2)); 83 SPtr->GetPairingCorrection(N,Z,res); << 84 78 85 static const G4double D = 1.248*CLHEP::MeV; << 79 return BF0 + D - SellPlusPairingCorrection(Z,N); 86 return BF0 + D*d - res; << 87 } 80 } 88 81 89 82