Geant4  10.03
G4PhotonEvaporation.hh
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26 // $Id: G4PhotonEvaporation.hh 101756 2016-11-24 14:27:39Z gcosmo $
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28 // -------------------------------------------------------------------
29 //
30 // GEANT4 class file
31 //
32 // CERN, Geneva, Switzerland
33 //
34 // File name: G4PhotonEvaporation
35 //
36 // Author: Vladimir Ivantchenko
37 //
38 // Creation date: 22 October 2015
39 //
40 //Modifications:
41 //
42 //
43 // -------------------------------------------------------------------
44 //
45 // This is a new class which has different design and uses different data
46 // structure than the old one
47 //
48 
49 #ifndef G4PHOTONEVAPORATION_HH
50 #define G4PHOTONEVAPORATION_HH 1
51 
52 #include "globals.hh"
53 #include "G4VEvaporationChannel.hh"
54 #include "G4NuclearLevelData.hh"
55 #include "G4LevelManager.hh"
56 #include "G4Fragment.hh"
57 
58 const G4int MAXDEPOINT = 10;
59 const G4int MAXGRDATA = 300;
60 
61 class G4GammaTransition;
62 
64 
65 public:
66 
67  explicit G4PhotonEvaporation(G4GammaTransition* ptr=nullptr);
68 
69  virtual ~G4PhotonEvaporation();
70 
71  virtual void Initialise() final;
72 
73  // one photon or e- emission
74  virtual G4Fragment* EmittedFragment(G4Fragment* theNucleus) final;
75 
76  // returns "false", emitted gamma and e- are added to the results
77  virtual G4bool
78  BreakUpChain(G4FragmentVector* theResult, G4Fragment* theNucleus) final;
79 
80  // emitted gamma, e-, and residual fragment are added to the results
81  G4FragmentVector* BreakItUp(const G4Fragment& theNucleus);
82 
83  // compute emission probability for both continum and discrete cases
84  // must be called before any method above
85  virtual G4double GetEmissionProbability(G4Fragment* theNucleus) final;
86 
88 
89  virtual G4double GetUpperLevelEnergy(G4int Z, G4int A) final;
90 
92 
94 
95  virtual void SetICM(G4bool);
96 
97  virtual void RDMForced (G4bool);
98 
99  inline void SetVerboseLevel(G4int verbose);
100 
101  inline G4int GetVacantShellNumber() const;
102 
103 private:
104 
106 
107  inline void InitialiseLevelManager(G4int Z, G4int A);
108 
110  const G4PhotonEvaporation & operator = (const G4PhotonEvaporation & right) = delete;
111 
115 
122  size_t fIndex;
123 
126 
128 
135 
138 
143 };
144 
146 {
147  fVerbose = verbose;
148 }
149 
150 inline void
152 {
153  if(Z != theZ || A != theA) {
154  theZ = Z;
155  theA = A;
156  fIndex = 0;
159  }
160 }
161 
163 {
164  return vShellNumber;
165 }
166 
167 #endif
virtual void SetICM(G4bool)
void SetMaxHalfLife(G4double)
G4FragmentVector * BreakItUp(const G4Fragment &theNucleus)
G4GammaTransition * fTransition
const G4int MAXGRDATA
virtual G4bool BreakUpChain(G4FragmentVector *theResult, G4Fragment *theNucleus) final
static G4float GREnergy[MAXGRDATA]
const G4int MAXDEPOINT
virtual void RDMForced(G4bool)
const G4LevelManager * GetLevelManager(G4int Z, G4int A)
G4PhotonEvaporation(G4GammaTransition *ptr=nullptr)
float G4float
Definition: G4Types.hh:77
virtual G4Fragment * EmittedFragment(G4Fragment *theNucleus) final
virtual void Initialise() final
static G4float GRWidth[MAXGRDATA]
G4double fCummProbability[MAXDEPOINT]
const G4LevelManager * fLevelManager
int G4int
Definition: G4Types.hh:78
virtual G4double GetEmissionProbability(G4Fragment *theNucleus) final
double A(double temperature)
bool G4bool
Definition: G4Types.hh:79
std::vector< G4Fragment * > G4FragmentVector
Definition: G4Fragment.hh:63
void SetGammaTransition(G4GammaTransition *)
G4int GetVacantShellNumber() const
G4double energy(const ThreeVector &p, const G4double m)
G4Fragment * GenerateGamma(G4Fragment *nucleus)
G4NuclearLevelData * fNuclearLevelData
const G4PhotonEvaporation & operator=(const G4PhotonEvaporation &right)=delete
double G4double
Definition: G4Types.hh:76
void InitialiseLevelManager(G4int Z, G4int A)
G4float MaxLevelEnergy() const
virtual G4double GetUpperLevelEnergy(G4int Z, G4int A) final
void SetVerboseLevel(G4int verbose)
virtual G4double GetFinalLevelEnergy(G4int Z, G4int A, G4double energy) final