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G4QElastic.hh
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26 // $Id$
27 //
28 // ---------------- G4QElastic header ----------------
29 // by Mikhail Kossov, December 2003.
30 // Header of G4QElastic class (hadron+A) of the CHIPS Simulation Branch in GEANT4
31 // -------------------------------------------------------------------------------
32 // This is a unique CHIPS class for the Hadron-Nuclear Elastic Scattering Prosesses
33 // -------------------------------------------------------------------------------
34 // Short description: A process for CHIPS hadron-nucleus elastic scattering.
35 // -------------------------------------------------------------------------------
36 
37 #ifndef G4QElastic_hh
38 #define G4QElastic_hh
39 
40 // GEANT4 Headers
41 #include "globals.hh"
42 #include "G4ios.hh"
43 #include "Randomize.hh"
44 #include "G4VDiscreteProcess.hh"
45 #include "G4Track.hh"
46 #include "G4Step.hh"
47 #include "G4ParticleTypes.hh"
48 #include "G4VParticleChange.hh"
49 #include "G4ParticleDefinition.hh"
50 #include "G4DynamicParticle.hh"
51 #include "G4ThreeVector.hh"
52 #include "G4LorentzVector.hh"
53 
54 // CHIPS Headers
64 #include "G4QIsotope.hh"
65 #include "G4QCHIPSWorld.hh"
66 #include "G4QHadron.hh"
67 #include <vector>
68 
70 {
71 public:
72 
73  // Constructor
74  G4QElastic(const G4String& processName ="CHIPSElasticScattering");
75 
76  // Destructor
77  ~G4QElastic();
78 
79  G4bool IsApplicable(const G4ParticleDefinition& particle);
80 
81  G4double GetMeanFreePath(const G4Track& aTrack, G4double previousStepSize,
83  // It returns the MeanFreePath of the process for the current track :
84  // (energy, material)
85  // The previousStepSize and G4ForceCondition* are not used.
86  // This function overloads a virtual function of the base class.
87  // It is invoked by the ProcessManager of the Particle.
88 
89 
90  G4VParticleChange* PostStepDoIt(const G4Track& aTrack, const G4Step& aStep);
91  // It computes the final state of the process (at end of step),
92  // returned as a ParticleChange object.
93  // This function overloads a virtual function of the base class.
94  // It is invoked by the ProcessManager of the Particle.
95 
96 
98 
100 
101 private:
102 
103  // Hide assignment operator as private
104  G4QElastic& operator=(const G4QElastic &right);
105 
106  // Copy constructor
107  G4QElastic(const G4QElastic&);
108 
109  // Calculate XS/t: oxs=true - only CS; xst=true - calculate XS, xst=false(oxs=f/t) - t/tm
110  G4double CalculateXSt(G4bool oxs, G4bool xst, G4double p, G4int Z, G4int N, G4int pPDG);
111 
112  // BODY
113  // Static Parameters --------------------------------------------------------------------
114  static G4int nPartCWorld; // The#of particles for hadronization (limit of A of fragm.)
115  //--------------------------------- End of static parameters ---------------------------
116  // Working parameters
117  G4VQCrossSection* theCS;
118  G4LorentzVector EnMomConservation; // Residual of Energy/Momentum Cons.
119  G4int nOfNeutrons; // #of neutrons in the target nucleus
120 
121  // Modifires for the reaction
122  G4double Time; // Time shift of the capture reaction
123  G4double EnergyDeposition; // Energy deposited in the reaction
124  static std::vector <G4int> ElementZ; // Z of the element(i) in theLastCalc
125  static std::vector <G4double> ElProbInMat; // SumProbabilityElements in Material
126  static std::vector <std::vector<G4int>*> ElIsoN; // N of isotope(j) of Element(i)
127  static std::vector <std::vector<G4double>*> IsoProbInEl;// SumProbabIsotopes in Element i
128 };
129 #endif