source: trunk/source/processes/hadronic/models/de_excitation/gem_evaporation/include/G4GEMCoulombBarrier.hh @ 1197

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26//
27// J. M. Quesada (July 2009) based on G4GEMCoulombBarrierHE
28// Coded strictly according to Furihata's GEM paper
29//
30#ifndef G4GEMCoulombBarrier_h
31#define G4GEMCoulombBarrier_h 1
32
33#include "G4VCoulombBarrier.hh"
34#include "globals.hh"
35
36
37class G4GEMCoulombBarrier : public G4VCoulombBarrier
38{
39public:
40  G4GEMCoulombBarrier() : G4VCoulombBarrier(1,0) {};
41  G4GEMCoulombBarrier(const G4int anA,const G4int aZ) :
42  G4VCoulombBarrier(anA,aZ) {};
43  ~G4GEMCoulombBarrier() {};
44
45private:
46  G4GEMCoulombBarrier(const G4GEMCoulombBarrier & right);
47
48  const G4GEMCoulombBarrier & operator=(const G4GEMCoulombBarrier & right);
49  G4bool operator==(const G4GEMCoulombBarrier & right) const;
50  G4bool operator!=(const G4GEMCoulombBarrier & right) const;
51 
52public:
53  G4double GetCoulombBarrier(const G4int ARes, const G4int ZRes, 
54                             const G4double U) const;
55
56
57private:
58
59  virtual G4double BarrierPenetrationFactor(const G4double /*aZ*/) const {return 1.0;};
60
61  virtual G4double CalcCompoundRadius(const G4double ARes) const;
62
63};
64#endif
65
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