source: trunk/source/particles/management/include/G4MuonDecayChannelWithSpin.hh @ 1340

Last change on this file since 1340 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//               17 August 2004 P.Gumplinger and T.MacPhail
31//               samples Michel spectrum including 1st order
32//               radiative corrections
33//               Reference: Florian Scheck "Muon Physics", in Physics Reports
34//                          (Review Section of Physics Letters) 44, No. 4 (1978)
35//                          187-248. North-Holland Publishing Company, Amsterdam
36//                          at page 210 cc.
37//
38//                          W.E. Fisher and F. Scheck, Nucl. Phys. B83 (1974) 25.
39//
40// ------------------------------------------------------------
41#ifndef G4MuonDecayChannelWithSpin_hh
42#define G4MuonDecayChannelWithSpin_hh 1
43
44#include "globals.hh"
45#include "G4ThreeVector.hh"
46#include "G4MuonDecayChannel.hh"
47
48class G4MuonDecayChannelWithSpin : public G4MuonDecayChannel
49{
50  // Class Decription
51  // This class describes muon decay kinemtics.
52  // This version assumes V-A coupling with 1st order radiative correctons,
53  //              the standard model Michel parameter values, but
54  //              gives incorrect energy spectrum for neutrinos
55
56public:  // With Description
57
58  //Constructors
59  G4MuonDecayChannelWithSpin(const G4String& theParentName,
60                             G4double        theBR);
61  //  Destructor
62  virtual ~G4MuonDecayChannelWithSpin();
63
64public:  // With Description
65
66  virtual G4DecayProducts *DecayIt(G4double);
67
68  void SetPolarization(G4ThreeVector);
69  const G4ThreeVector& GetPolarization() const;
70
71private:
72
73  G4ThreeVector parent_polarization;
74
75// Radiative Correction Factors
76
77  G4double F_c(G4double x, G4double x0);
78  G4double F_theta(G4double x, G4double x0);
79  G4double R_c(G4double x);
80
81  G4double EMMU;
82  G4double EMASS;
83
84};
85
86inline void G4MuonDecayChannelWithSpin::SetPolarization(G4ThreeVector polar)
87{
88  parent_polarization = polar;
89}
90
91inline const G4ThreeVector& G4MuonDecayChannelWithSpin::GetPolarization() const
92{
93  return parent_polarization;
94}
95
96inline G4double G4MuonDecayChannelWithSpin::F_c(G4double x, G4double x0)
97{
98  G4double omega = std::log(EMMU/EMASS);
99
100  G4double f_c;
101
102  f_c = (5.+17.*x-34.*x*x)*(omega+std::log(x))-22.*x+34.*x*x;
103  f_c = (1.-x)/(3.*x*x)*f_c;
104  f_c = (6.-4.*x)*R_c(x)+(6.-6.*x)*std::log(x) + f_c;
105  f_c = (fine_structure_const/twopi) * (x*x-x0*x0) * f_c;
106
107  return f_c;
108}
109
110inline G4double G4MuonDecayChannelWithSpin::F_theta(G4double x, G4double x0)
111{
112  G4double omega = std::log(EMMU/EMASS);
113
114  G4double f_theta;
115
116  f_theta = (1.+x+34*x*x)*(omega+std::log(x))+3.-7.*x-32.*x*x;
117  f_theta = f_theta + ((4.*(1.-x)*(1.-x))/x)*std::log(1.-x);
118  f_theta = (1.-x)/(3.*x*x) * f_theta;
119  f_theta = (2.-4.*x)*R_c(x)+(2.-6.*x)*std::log(x)-f_theta;
120  f_theta = (fine_structure_const/twopi) * (x*x-x0*x0) * f_theta;
121
122  return f_theta;
123}
124
125#endif
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