source: trunk/source/processes/optical/include/G4OpMieHG.hh @ 1350

Last change on this file since 1350 was 1350, checked in by garnier, 13 years ago

update to last version 4.9.4

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1//
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24// ********************************************************************
25//
26////////////////////////////////////////////////////////////////////////
27//
28// File G4OpMieHG.hh
29// Description: Discrete Process -- Mie Scattering of Optical Photons
30// Created: 2010-07-03
31// Author: Xin Qian
32// Based on work from Vlasios Vasileiou
33//
34// This subroutine will mimic the Mie scattering based on
35// Henyey-Greenstein phase function
36// Forward and backward angles are treated separately.
37//
38// mail: gum@triumf.ca
39//
40////////////////////////////////////////////////////////////////////////
41
42#ifndef G4OpMieHG_h
43#define G4OpMieHG_h 1
44
45#include "G4VDiscreteProcess.hh"
46#include "G4OpticalPhoton.hh"
47
48class G4OpMieHG : public G4VDiscreteProcess
49{
50
51public:
52
53  G4OpMieHG(const G4String& processName = "OpMieHG",
54                     G4ProcessType type = fOptical);
55  ~G4OpMieHG();
56
57  ////////////
58  // Methods
59  ////////////
60
61  G4bool IsApplicable(const G4ParticleDefinition& aParticleType); 
62  // Returns true -> 'is applicable' only for an optical photon.
63
64  G4double GetMeanFreePath(const G4Track& aTrack,
65                           G4double,
66                           G4ForceCondition* );
67  // Return the mean free path of Mie scattering
68
69  G4VParticleChange* PostStepDoIt(const G4Track& aTrack,
70                                  const G4Step&  aStep);
71  // This is the method implementing Mie scattering.
72
73};
74 
75
76inline
77G4bool G4OpMieHG::IsApplicable(const G4ParticleDefinition& aParticleType)
78{
79  return ( &aParticleType == G4OpticalPhoton::OpticalPhoton() );
80}
81
82#endif /* G4OpMieHG_h */
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