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G4GEMChannel.hh
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27 // $Id: G4GEMChannel.hh 107060 2017-11-01 15:00:04Z gcosmo $
28 //
29 // Hadronic Process: Nuclear De-excitations
30 // by V. Lara (Oct 1998)
31 //
32 #ifndef G4GEMChannel_h
33 #define G4GEMChannel_h 1
34 
35 #include "G4VEvaporationChannel.hh"
36 #include "G4GEMProbability.hh"
39 #include "G4NucleiProperties.hh"
40 #include "Randomize.hh"
41 #include "G4ParticleTable.hh"
42 
43 class G4Pow;
45 class G4VCoulombBarrier;
46 
48 {
49 public:
50 
51  explicit G4GEMChannel(G4int theA, G4int theZ, const G4String & aName,
52  G4GEMProbability * aEmissionStrategy);
53 
54  // destructor
55  virtual ~G4GEMChannel();
56 
57  virtual G4double GetEmissionProbability(G4Fragment* theNucleus);
58 
59  virtual G4Fragment* EmittedFragment(G4Fragment* theNucleus);
60 
61  virtual void Dump() const;
62 
64  {
65  if (MyOwnLevelDensity) { delete theLevelDensityPtr; }
66  theLevelDensityPtr = aLevelDensity;
67  MyOwnLevelDensity = false;
68  }
69 
70 private:
71 
72  // Samples fragment kinetic energy.
73  G4double SampleKineticEnergy(const G4Fragment & fragment);
74 
75  G4GEMChannel(const G4GEMChannel & right) = delete;
76  const G4GEMChannel & operator=(const G4GEMChannel & right) = delete;
77  G4bool operator==(const G4GEMChannel & right) const = delete;
78  G4bool operator!=(const G4GEMChannel & right) const = delete;
79 
80  // Data Members ************
81  // This data member define the channel.
82  // They are intializated at object creation (constructor) time.
83 
84  // Atomic Number
86 
87  // Charge
89 
92 
94 
95  // For evaporation probability calcualtion
97 
98  // For Level Density calculation
101 
102  // For Coulomb Barrier calculation
105 
107 
108  //---------------------------------------------------
109 
110  // These values depend on the nucleus that is being evaporated.
111  // They are calculated through the Initialize method which takes as parameters
112  // the atomic number, charge and excitation energy of nucleus.
113 
114  // Residual Atomic Number
116 
117  // Residual Charge
119 
120  // Emission Probability
122 
123  // Maximal Kinetic Energy that can be carried by fragment
125 };
126 
127 
128 #endif
G4double EvaporatedMass
Definition: G4GEMChannel.hh:90
G4double MaximalKineticEnergy
G4bool operator!=(const G4GEMChannel &right) const =delete
G4double ResidualMass
Definition: G4GEMChannel.hh:91
G4PairingCorrection * pairingCorrection
G4double CoulombBarrier
G4GEMChannel(G4int theA, G4int theZ, const G4String &aName, G4GEMProbability *aEmissionStrategy)
Definition: G4GEMChannel.cc:50
G4double SampleKineticEnergy(const G4Fragment &fragment)
G4GEMProbability * theEvaporationProbabilityPtr
Definition: G4GEMChannel.hh:96
G4bool operator==(const G4GEMChannel &right) const =delete
double G4double
Definition: G4Types.hh:76
bool G4bool
Definition: G4Types.hh:79
virtual void Dump() const
virtual ~G4GEMChannel()
Definition: G4GEMChannel.cc:71
const G4GEMChannel & operator=(const G4GEMChannel &right)=delete
G4VLevelDensityParameter * theLevelDensityPtr
void SetLevelDensityParameter(G4VLevelDensityParameter *aLevelDensity)
Definition: G4GEMChannel.hh:63
int G4int
Definition: G4Types.hh:78
G4VCoulombBarrier * theCoulombBarrierPtr
Definition: G4Pow.hh:56
virtual G4Fragment * EmittedFragment(G4Fragment *theNucleus)
G4bool MyOwnLevelDensity
Definition: G4GEMChannel.hh:99
virtual G4double GetEmissionProbability(G4Fragment *theNucleus)
Definition: G4GEMChannel.cc:77
G4double EmissionProbability
G4Pow * fG4pow
Definition: G4GEMChannel.hh:93