Geant4 10.7.0
Toolkit for the simulation of the passage of particles through matter
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G4VEvaporation.hh
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1//
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25//
26//
27// Hadronic Process: Nuclear De-excitations interface
28//
29// by V. Lara (Oct 1998) written from G4Evaporation.hh (May 1998)
30//
31// Modifications:
32// 03 September 2008 by J. M. Quesada for external choice of inverse
33// cross section option
34// 06 September 2008 (JMQ) Also external choices have been added for
35// superimposed Coulomb barrier (if useSICBis set true, by default is false)
36// 23 January 2012 by V.Ivanchenko added pointer of G4VPhotonEvaporation to
37// the constructor
38//
39
40#ifndef G4VEvaporation_h
41#define G4VEvaporation_h 1
42
43#include "globals.hh"
44#include "G4Fragment.hh"
47#include <vector>
48
50class G4VFermiBreakUp;
51
53{
54public:
55
56 explicit G4VEvaporation();
57 virtual ~G4VEvaporation();
58
59 // vector of products is added to the provided vector
60 // primary fragment is deleted or is modified and added to the list
61 // of products
62 virtual void BreakFragment(G4FragmentVector*, G4Fragment* theNucleus);
63
64 // definition of options
65 virtual void InitialiseChannels();
66
68
69 inline void SetFermiBreakUp(G4VFermiBreakUp* ptr);
70
71 inline G4VFermiBreakUp* GetFermiBreakUp() const;
74
75 // for inverse cross section choice
76 inline void SetOPTxs(G4int opt);
77 // for superimposed Coulomb Barrier for inverse cross sections
78 inline void UseSICB(G4bool use);
79
80 inline size_t GetNumberOfChannels() const;
81
82protected:
83
84 void CleanChannels();
85
88
91
92 std::vector<G4VEvaporationChannel*> * theChannels;
94
95private:
96 G4VEvaporation(const G4VEvaporation &right) = delete;
97 const G4VEvaporation & operator=(const G4VEvaporation &right) = delete;
98 G4bool operator==(const G4VEvaporation &right) const = delete;
99 G4bool operator!=(const G4VEvaporation &right) const = delete;
100
101};
102
104{
105 theFBU = ptr;
106}
107
109{
110 return theFBU;
111}
112
114{
116}
117
119{
120 return (theChannels && theChannels->size() > 1) ? (*theChannels)[1] : nullptr;
121}
122
124{
125 OPTxs = opt;
126}
127
129{
130 useSICB = use;
131}
132
134{
135 return theChannels ? theChannels->size() : 0;
136}
137
138#endif
std::vector< G4Fragment * > G4FragmentVector
Definition: G4Fragment.hh:63
bool G4bool
Definition: G4Types.hh:86
int G4int
Definition: G4Types.hh:85
virtual void BreakFragment(G4FragmentVector *, G4Fragment *theNucleus)
G4VEvaporationChannel * GetFissionChannel()
size_t GetNumberOfChannels() const
G4VEvaporationChannel * GetPhotonEvaporation()
void SetOPTxs(G4int opt)
G4VFermiBreakUp * theFBU
void UseSICB(G4bool use)
virtual ~G4VEvaporation()
G4VEvaporationChannel * thePhotonEvaporation
virtual void SetPhotonEvaporation(G4VEvaporationChannel *ptr)
void SetFermiBreakUp(G4VFermiBreakUp *ptr)
G4VEvaporationFactory * theChannelFactory
G4VFermiBreakUp * GetFermiBreakUp() const
std::vector< G4VEvaporationChannel * > * theChannels
virtual void InitialiseChannels()