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G4TransparentRegXTRadiator.hh
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27 // $Id: G4TransparentRegXTRadiator.hh 97385 2016-06-02 09:59:53Z gcosmo $
28 //
29 //
31 //
32 // Process describing a radiator of X-ray transition radiation.
33 // Thicknesses of plates and gas gaps are fixed.
34 // We suppose that:
35 // formation zone ~ mean thickness << absorption length
36 // for each material and in the range 1-100 keV. This allows us to simplify
37 // interference effects in radiator stack (GetStackFactor method).
38 //
39 //
40 // History:
41 //
42 // 05.04.05 V. Grichine, first version
43 //
44 
45 
46 #ifndef G4TransparentRegXTRadiator_h
47 #define G4TransparentRegXTRadiator_h 1
48 
49 #include "G4VXTRenergyLoss.hh"
50 
52 {
53 public:
54 
55  explicit G4TransparentRegXTRadiator (G4LogicalVolume *anEnvelope,
57  const G4String & processName = "TransparentRegXTRadiator");
59 
60  // reimplementation of base class function in analytical way
61 
63 
64  // Pure virtual function from base class
65 
66  G4double GetStackFactor( G4double energy, G4double gamma, G4double varAngle) override;
67 };
68 
69 #endif
G4double SpectralXTRdEdx(G4double energy) override
int G4int
Definition: G4Types.hh:78
G4double GetStackFactor(G4double energy, G4double gamma, G4double varAngle) override
G4double energy(const ThreeVector &p, const G4double m)
G4TransparentRegXTRadiator(G4LogicalVolume *anEnvelope, G4Material *, G4Material *, G4double, G4double, G4int, const G4String &processName="TransparentRegXTRadiator")
double G4double
Definition: G4Types.hh:76