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Geant4/processes/hadronic/models/de_excitation/util/src/G4CoulombBarrier.cc

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Diff markup

Differences between /processes/hadronic/models/de_excitation/util/src/G4CoulombBarrier.cc (Version 11.3.0) and /processes/hadronic/models/de_excitation/util/src/G4CoulombBarrier.cc (Version 11.0.p4)


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 25 //                                                 25 //
 26 //                                                 26 //
 27 // Hadronic Process: Nuclear De-excitations        27 // Hadronic Process: Nuclear De-excitations
 28 // by V. Lara (Dec 1999)                           28 // by V. Lara (Dec 1999)
 29 //                                                 29 //
 30 // 14-11-2007 modified barrier by JMQ (test30)     30 // 14-11-2007 modified barrier by JMQ (test30) 
 31 // 15-11-2010 V.Ivanchenko use G4Pow and clean     31 // 15-11-2010 V.Ivanchenko use G4Pow and cleanup 
 32                                                    32 
 33 #include "G4CoulombBarrier.hh"                     33 #include "G4CoulombBarrier.hh"
 34 #include "G4PhysicalConstants.hh"                  34 #include "G4PhysicalConstants.hh"
 35 #include "G4SystemOfUnits.hh"                      35 #include "G4SystemOfUnits.hh"
                                                   >>  36 #include "G4Pow.hh"
 36 #include "G4NuclearRadii.hh"                       37 #include "G4NuclearRadii.hh"
 37                                                    38 
 38 G4CoulombBarrier::G4CoulombBarrier(G4int A, G4     39 G4CoulombBarrier::G4CoulombBarrier(G4int A, G4int Z)
 39   : G4VCoulombBarrier(A, Z)                    <<  40   : G4VCoulombBarrier(A, Z), g4calc(G4Pow::GetInstance())
 40 {                                                  41 {
 41   factor = CLHEP::elm_coupling*Z;                  42   factor = CLHEP::elm_coupling*Z;
 42   SetParameters(0.4*G4NuclearRadii::RadiusCB(Z <<  43   SetParameters(0.4*G4NuclearRadii::RadiusCB(Z, A),1.3*CLHEP::fermi);
 43 }                                                  44 }
 44                                                    45 
                                                   >>  46 G4CoulombBarrier::~G4CoulombBarrier() 
                                                   >>  47 {}
                                                   >>  48 
 45 G4double G4CoulombBarrier::GetCoulombBarrier(      49 G4double G4CoulombBarrier::GetCoulombBarrier(
 46          G4int ARes, G4int ZRes, G4double U) c <<  50          G4int ARes, G4int ZRes, G4double) const 
 47 {                                                  51 {
 48   if (0 == theZ) { return 0.0; }               <<  52   return factor*ZRes/(G4NuclearRadii::RadiusCB(ZRes,ARes) + GetRho());
 49   G4double cb = factor*ZRes/(G4NuclearRadii::R <<  53   //return factor*ZRes/((G4NuclearRadii::RadiusCB(ZRes,ARes) 
 50   if (U > 0.0) { cb /= (1.0 + std::sqrt( U/((2 <<  54   //       + GetRho())*(1.0 + std::sqrt(U/(G4double)(2*ARes))));
 51   return cb;                                   << 
 52 }                                                  55 }
 53                                                    56 
 54 G4double G4CoulombBarrier::BarrierPenetrationF     57 G4double G4CoulombBarrier::BarrierPenetrationFactor(G4int aZ) const 
 55 {                                                  58 {
 56   // Data comes from                           << 
 57   // Dostrovsky, Fraenkel and Friedlander      << 
 58   // Physical Review, vol 116, num. 3 1959     << 
 59   //                                           << 
 60   // const G4int size = 5;                     << 
 61   // const G4double Zlist[size] = {10.0, 20.0, << 
 62   // const G4double Kprot[size] = {0.42, 0.58, << 
 63   //                                           << 
 64   G4double res = 1.0;                              59   G4double res = 1.0;
 65   if(theZ == 1) {                              <<  60   if(GetZ() == 1) {
 66     res = (aZ >= 70) ? 0.80 :                      61     res = (aZ >= 70) ? 0.80 :
 67     (((0.2357e-5*aZ) - 0.42679e-3)*aZ + 0.2703     62     (((0.2357e-5*aZ) - 0.42679e-3)*aZ + 0.27035e-1)*aZ + 0.19025;
 68     res += 0.06*(theA - 1);                    <<  63     res += 0.06*(GetA() - 1);
 69                                                    64 
 70   } else if(theZ == 2 && theA <= 4) {          <<  65   } else if(GetZ() == 2 && GetA() <= 4) {
 71     res = (aZ >= 70) ? 0.98 :                      66     res = (aZ >= 70) ? 0.98 :
 72     (((0.23684e-5*aZ) - 0.42143e-3)*aZ + 0.252     67     (((0.23684e-5*aZ) - 0.42143e-3)*aZ + 0.25222e-1)*aZ + 0.46699;
 73     res += 0.12*(4 - theA);                    <<  68     res += 0.12*(4 - GetA());
 74   }                                                69   }
 75   return res;                                      70   return res;
 76 }                                                  71 }
 77                                                    72