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G4FermiPhaseSpaceDecay.hh
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25 //
26 //
27 // Hadronic Process: Phase space decay for the Fermi BreakUp model
28 // by V. Lara
29 //
30 // Modifications:
31 // 01.04.2011 General cleanup by V.Ivanchenko:
32 // - IsotropicVector is inlined
33 // - Momentum computation return zero or positive value
34 // - DumpProblem method is added providing more information
35 // - Reduced usage of exotic std functions
36 //
37 
38 #ifndef G4FermiPhaseSpaceDecay_hh
39 #define G4FermiPhaseSpaceDecay_hh 1
40 
41 #include "G4LorentzVector.hh"
42 #include "G4ThreeVector.hh"
43 #include "Randomize.hh"
44 
45 #include <vector>
46 
47 class G4Pow;
48 
50 {
51 public:
52 
55 
56  std::vector<G4LorentzVector*>* Decay(G4double parent_mass,
57  const std::vector<G4double>& fragment_masses) const;
58 
59 private:
60 
61  inline G4double PtwoBody(G4double E, G4double P1, G4double P2) const;
62 
64 
65  std::vector<G4LorentzVector*> *
66  KopylovNBodyDecay(G4double, const std::vector<G4double>&) const;
67 
69  const G4FermiPhaseSpaceDecay & operator=
70  (const G4FermiPhaseSpaceDecay &) = delete;
71  G4bool operator==(const G4FermiPhaseSpaceDecay&) = delete;
72  G4bool operator!=(const G4FermiPhaseSpaceDecay&) = delete;
73 
75 };
76 
77 inline G4double
79 {
80  G4double P = (E+P1+P2)*(E+P1-P2)*(E-P1+P2)*(E-P1-P2)/(4.0*E*E);
81  return (P>0.0) ? std::sqrt(P) : 0.0;
82 }
83 
84 #endif