source: trunk/source/particles/management/include/G4MuonRadiativeDecayChannelWithSpin.hh @ 1202

Last change on this file since 1202 was 824, checked in by garnier, 16 years ago

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25//
26// ------------------------------------------------------------
27//      GEANT 4 class header file
28//
29//      History:
30//               25 July 2007 P.Gumplinger
31//               Samples Radiative Muon Decay
32//               Reference:
33//                    TRIUMF/TWIST Technote:
34//                    "Radiative muon decay" by P. Depommier and A. Vacheret
35//
36// ------------------------------------------------------------
37//
38//
39//
40//
41
42//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo....
43//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo....
44
45#ifndef G4MuonRadiativeDecayChannelWithSpin_h
46#define G4MuonRadiativeDecayChannelWithSpin_h 1
47
48#include "globals.hh"
49#include "Randomize.hh"
50#include "G4ThreeVector.hh"
51#include "G4VDecayChannel.hh"
52
53class G4MuonRadiativeDecayChannelWithSpin : public G4VDecayChannel
54{
55  // Class Decription
56  // This class describes radiative muon decay kinemtics, but
57  // gives incorrect energy spectrum for neutrinos
58
59  public:  // With Description
60
61    //Constructors
62    G4MuonRadiativeDecayChannelWithSpin(const G4String& theParentName,
63                                        G4double        theBR);
64    //  Destructor
65    virtual ~G4MuonRadiativeDecayChannelWithSpin();
66
67  public:  // With Description
68
69    virtual G4DecayProducts *DecayIt(G4double);
70
71    void SetPolarization(G4ThreeVector);
72    const G4ThreeVector& GetPolarization() const;
73
74  private:
75
76    G4ThreeVector parent_polarization;
77
78    G4double fron(G4double Pmu, G4double x, G4double y,
79                  G4double cthetaE, G4double cthetaG, G4double cthetaEG);
80
81    // rn3dim generates random vectors, uniformly distributed over the surface
82    // of a sphere of given radius.
83    // See http://wwwinfo.cern.ch/asdoc/shortwrupsdir/v131/top.html
84
85    void rn3dim(G4double& x, G4double& y, G4double& z, G4double xlong);
86
87    G4double atan4(G4double x, G4double y);
88
89    G4double EMMU;
90    G4double EMASS;
91
92};
93
94inline void G4MuonRadiativeDecayChannelWithSpin::
95                                        SetPolarization(G4ThreeVector polar)
96{
97  parent_polarization = polar;
98}
99
100inline const G4ThreeVector& G4MuonRadiativeDecayChannelWithSpin::
101                                        GetPolarization() const
102{
103  return parent_polarization;
104}
105
106inline void G4MuonRadiativeDecayChannelWithSpin::rn3dim(G4double& x,
107                                                        G4double& y,
108                                                        G4double& z,
109                                                        G4double xlong)
110{
111      G4double a = 0.; G4double b = 0.; G4double c = 0.; G4double r = 0.;
112
113      do {
114         a = G4UniformRand() - 0.5;
115         b = G4UniformRand() - 0.5;
116         c = G4UniformRand() - 0.5;
117         r = a*a + b*b + c*c;
118      } while (r > 0.25);
119
120      G4double rinv = xlong/(std::sqrt(r)); 
121      x = a * rinv;
122      y = b * rinv;
123      z = c * rinv;
124
125      return;
126}
127
128inline G4double G4MuonRadiativeDecayChannelWithSpin::atan4(G4double x,
129                                                           G4double y)
130{
131      G4double phi = 0.;
132
133      G4double pi = 4.*std::atan(1.);
134
135      if        (x==0. && y>0.){
136         phi = 0.5*pi;
137      } else if (x==0. && y<0.){
138         phi = 1.5*pi;
139      } else if (y==0. && x>0.){
140         phi = 0.;
141      } else if (y==0. && x<0.){
142         phi = pi;
143      } else if (x>0.         ){
144         phi = std::atan(y/x);
145      } else if (x<0.         ){
146         phi = std::atan(y/x) + pi;
147      }
148
149      return phi;
150}
151
152#endif
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