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G4Fancy3DNucleus.hh
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26 #ifndef G4Fancy3DNucleus_h
27 #define G4Fancy3DNucleus_h 1
28 
29 // ------------------------------------------------------------
30 // GEANT 4 class header file
31 //
32 // ---------------- G4Fancy3DNucleus ----------------
33 // by Gunter Folger, May 1998.
34 // class for a 3D nucleus, arranging nucleons in space and momentum.
35 // ------------------------------------------------------------
36 // 20110805 M. Kelsey -- Remove C-style array (pointer) of G4Nucleons,
37 // make vector a container of objects. Move testSums,
38 // places, momentum and fermiM to class data members for
39 // reuse. Remove args from ReduceSum(), use data members.
40 
41 #include "globals.hh"
42 #include "G4DynamicParticle.hh"
43 #include "G4Nucleon.hh" /* FIXME: This should be forward decl! */
44 #include "G4V3DNucleus.hh"
45 #include "G4VNuclearDensity.hh"
46 #include "G4FermiMomentum.hh"
47 #include <vector>
48 
50 
51 // to test if we can drop old interface for (A,Z), comment next line..
52 //#define NON_INTEGER_A_Z 1
53 
55 {
56 
57  public:
60 
61  private:
63  const G4Fancy3DNucleus & operator=(const G4Fancy3DNucleus &right);
64  int operator==(const G4Fancy3DNucleus &right) const;
65  int operator!=(const G4Fancy3DNucleus &right) const;
66 
67 
68 // Implementation
69  void ChooseNucleons();
70  void ChoosePositions();
71  void ChooseFermiMomenta();
73  G4bool ReduceSum();
74 
75  public:
76 #if defined(NON_INTEGER_A_Z)
77  void Init(G4double theA, G4double theZ);
78 #endif
79  void Init(G4int theA, G4int theZ);
80  G4bool StartLoop();
82  const std::vector<G4Nucleon> & GetNucleons();
84  G4double GetMass();
85  G4int GetCharge();
87  G4double GetNuclearRadius(const G4double maxRelativeDensity);
92  void DoLorentzBoost(const G4LorentzVector & theBoost);
93  void DoLorentzBoost(const G4ThreeVector & theBeta);
94  void DoLorentzContraction(const G4LorentzVector & theBoost);
95  void DoLorentzContraction(const G4ThreeVector & theBeta);
96  void CenterNucleons();
97  void DoTranslation(const G4ThreeVector & theShift);
98  const G4VNuclearDensity * GetNuclearDensity() const;
99  void SortNucleonsIncZ();
100  void SortNucleonsDecZ();
101 
102  private:
103 
106  std::vector<G4Nucleon> theNucleons;
107 
111 //const G4double nucleondistance; // Uzhi Dec. 2017
112  G4double nucleondistance; // Uzhi Dec. 2017
114 
115  std::vector<G4ThreeVector> places; // For selecting locations
116  std::vector<G4ThreeVector> momentum; // For selecting nucleon motion
117  std::vector<G4double> fermiM;
118  std::vector<G4Fancy3DNucleusHelper> testSums; // For sorting nucleon configs
119 };
120 
121 
123 {
124  return myZ;
125 }
126 
128 {
129  return myA;
130 }
132 {
133  excitationEnergy +=anE;
134  return excitationEnergy;
135 }
136 
138 {
139  return excitationEnergy;
140 }
141 
142 #endif
G4VNuclearDensity * theDensity
G4Nucleon * GetNextNucleon()
const G4Fancy3DNucleus & operator=(const G4Fancy3DNucleus &right)
G4double AddExcitationEnergy(G4double)
int operator!=(const G4Fancy3DNucleus &right) const
double G4double
Definition: G4Types.hh:76
bool G4bool
Definition: G4Types.hh:79
std::vector< G4double > fermiM
void DoLorentzContraction(const G4LorentzVector &theBoost)
std::vector< G4Fancy3DNucleusHelper > testSums
G4double GetOuterRadius()
std::vector< G4Nucleon > theNucleons
void Init(G4int theA, G4int theZ)
const std::vector< G4Nucleon > & GetNucleons()
std::vector< G4ThreeVector > momentum
G4double CoulombBarrier()
const G4VNuclearDensity * GetNuclearDensity() const
int operator==(const G4Fancy3DNucleus &right) const
G4double GetNuclearRadius()
int G4int
Definition: G4Types.hh:78
G4FermiMomentum theFermi
G4double BindingEnergy()
std::vector< G4ThreeVector > places
G4double GetExcitationEnergy()
void DoLorentzBoost(const G4LorentzVector &theBoost)
void DoTranslation(const G4ThreeVector &theShift)