source: trunk/source/processes/hadronic/models/cascade/evaporation/include/G4BertiniEvaporation.hh @ 1055

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1//
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25//
26//
27// Implementation of the HETC88 code into Geant4.
28// Evaporation and De-excitation parts
29// T. Lampen, Helsinki Institute of Physics, May-2000
30
31#ifndef G4BertiniEvaporation_h
32#define G4BertiniEvaporation_h 1
33
34#include "globals.hh"
35#include "G4LayeredNucleus.hh"
36#include "G4BertiniEvaporationChannel.hh"
37#include "G4ParticleChange.hh"   
38#include "G4VEvaporation.hh"
39
40
41class G4BertiniEvaporation : public G4VEvaporation
42{
43
44public:
45  G4BertiniEvaporation();
46  ~G4BertiniEvaporation(); 
47
48  virtual G4FragmentVector * BreakItUp(const G4Fragment &theNucleus)
49  {
50    G4LayeredNucleus aNuc( theNucleus.GetA(), theNucleus.GetZ() );
51    aNuc.AddExcitationEnergy(theNucleus.GetExcitationEnergy());
52    return BreakItUp(aNuc);
53  }
54  G4FragmentVector * BreakItUp( G4LayeredNucleus & nucleus);
55  void setVerboseLevel( const G4int verbose );
56 
57private: 
58  G4int verboseLevel;
59  std::vector< G4BertiniEvaporationChannel * > channelVector;
60  void fillResult( std::vector< G4DynamicParticle * > secondaryParticleVector,
61                   G4FragmentVector * aResult );
62  void splitBe8( const G4double E, 
63                 const G4ThreeVector boost,
64                 std::vector< G4DynamicParticle * > & secondaryParticleVector);
65  void isotropicCosines( G4double & u, G4double & v,G4double & w );
66};
67
68#endif
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