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G4LowEnergyPolarizedCompton.hh
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28 // ------------------------------------------------------------
29 // GEANT 4 class header file
30 // CERN Geneva Switzerland
31 //
32 
33 // --------- G4LowEnergyPolarizedCompton class -----
34 //
35 // by G.Depaola & F.Longo (21 may 2001)
36 // 24 May 2001 - MGP Modified to inherit from G4VDiscreteProcess
37 // 25 May 2001 - MGP Added protections to avoid crashes
38 //
39 // 17 October 2001 - F.Longo Major revision according to design iteration
40 //
41 // 21 February 2002 - F.Longo Revisions with A.Zoglauer and G.Depaola
42 // - better description of parallelism
43 // - system of ref change method improved
44 //
45 //
46 // Class description:
47 // Low Energy electromagnetic process, Polarised Compton scattering
48 // Further documentation available from http://www.ge.infn.it/geant4/lowE
49 
50 // ------------------------------------------------------------
51 
52 #ifndef G4RDLOWENERGYPOLARIZEDCOMPTON_H
53 #define G4RDLOWENERGYPOLARIZEDCOMPTON_H 1
54 
55 #include "globals.hh"
56 #include "G4VDiscreteProcess.hh"
57 
58 // Doppler Broadening
59 
60 #include "G4RDShellData.hh"
61 #include "G4RDDopplerProfile.hh"
62 
63 
64 class G4Track;
65 class G4Step;
67 class G4VParticleChange;
68 class G4RDVEMDataSet;
70 class G4RDVRangeTest;
71 
73 {
74 public:
75 
76  G4LowEnergyPolarizedCompton(const G4String& processName = "polarLowEnCompt");
77 
79 
80  G4bool IsApplicable(const G4ParticleDefinition& definition);
81 
83  G4VParticleChange* PostStepDoIt(const G4Track& aTrack, const G4Step& aStep);
84 
85 
86  // For testing purpose only
88  G4double previousStepSize,
90  { return GetMeanFreePath(aTrack, previousStepSize, condition); }
91 
92 
93 protected:
94 
95  G4double GetMeanFreePath(const G4Track& aTrack,
96  G4double previousStepSize,
98 private:
99 
100  // Hide copy constructor and assignment operator as private
101 
103  right);
105 
106  G4double lowEnergyLimit; // low energy limit applied to the process
107  G4double highEnergyLimit; // high energy limit applied to the process
108 
111 
114 
115  const G4double intrinsicLowEnergyLimit; // intrinsic validity range
117 
118  // specific methods for polarization
119 
120  G4ThreeVector GetRandomPolarization(G4ThreeVector& direction0); // Random Polarization
121  G4ThreeVector GetPerpendicularPolarization(const G4ThreeVector& direction0, const G4ThreeVector& polarization0) const;
122 
125  G4double phi, G4double cosTheta);
127 
128  void SystemOfRefChange(G4ThreeVector& direction0, G4ThreeVector& direction1,
129  G4ThreeVector& polarization0, G4ThreeVector& polarization1);
130 
131  // Doppler Broadening
132 
135 
136 
137 };
138 
139 #endif
140 
141 
142 
143 
144 
145 
146 
147 
148