G4UnstableFermiFragment.cc

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00025 //
00026 // $Id$
00027 //
00028 // Hadronic Process: Nuclear De-excitations
00029 // by V. Lara (Nov 1998)
00030 //
00031 // Modifications:
00032 // 01.04.2011 General cleanup by V.Ivanchenko: integer Z and A, constructor
00033 
00034 #include "G4UnstableFermiFragment.hh"
00035 
00036 G4UnstableFermiFragment::G4UnstableFermiFragment(G4int anA, G4int aZ, 
00037                                                  G4int Pol, G4double ExE)
00038   : G4VFermiFragment(anA,aZ,Pol,ExE)
00039 {
00040   isStable = false;
00041 } 
00042 
00043 G4UnstableFermiFragment::~G4UnstableFermiFragment()
00044 {}
00045 
00046 G4FragmentVector * 
00047 G4UnstableFermiFragment::GetFragment(const G4LorentzVector& aMomentum) const
00048 {
00049   std::vector<G4LorentzVector*> * P = thePhaseSpace.Decay(aMomentum.m(), Masses);
00050 
00051   G4ThreeVector Beta = aMomentum.boostVector();
00052 
00053   G4FragmentVector * theResult = new G4FragmentVector;
00054   size_t N = P->size();
00055 
00056   for (size_t i=0; i<N; ++i)
00057     {
00058       G4LorentzVector* v = (*P)[i];
00059       v->boost(Beta);
00060       theResult->push_back(new G4Fragment(AtomNum[i],Charges[i],*v));
00061       
00062       delete v;
00063     }
00064   delete P;
00065   
00066   return theResult;
00067 }

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