source: trunk/examples/advanced/raredecay_calorimetry/src/PhotInGapParameterisation.cc @ 1309

Last change on this file since 1309 was 807, checked in by garnier, 16 years ago

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27// $Id: PhotInGapParameterisation.cc,v 1.5 2006/06/29 16:25:15 gunter Exp $
28// GEANT4 tag $Name:  $
29//
30
31//#define debug
32
33#include "PhotInGapParameterisation.hh"
34
35PhotInGapParameterisation::PhotInGapParameterisation()
36:numberOfSlabs(PhotInNOfSlabs),gapMaterial(0),hyTot(1.),hzLay(1.),sampFract(.5) {}
37
38PhotInGapParameterisation::~PhotInGapParameterisation() {}
39
40void PhotInGapParameterisation::ComputeTransformation(const G4int copyNo,
41                                                      G4VPhysicalVolume* physVol) const
42{
43  G4double halfZ = hzLay*sampFract;     // half thichness of a slab of active part of layer
44  G4double halfY = hyTot/numberOfSlabs; // half width of each slab after the subdivision
45  G4double Zposition= halfZ - hzLay;    // Z-Position of all Active Gaps (rest is absorber)
46  G4double Yposition= (copyNo+copyNo)*halfY - (hyTot-halfY); // Trans (y) position of slabs
47#ifdef debug
48  G4cout<<"PhotInGapParameterisation::ComputeTransformation: hZ="<<halfZ<<", hY="<<halfY
49        <<", Z="<<Zposition<<", Y="<<Yposition<<G4endl;
50#endif
51  G4ThreeVector origin(0,Yposition,Zposition); // 3-vector for positioning of the slabs
52  physVol->SetTranslation(origin);      // Positioning of the slab
53  physVol->SetRotation(0);              // without rotation (which is possible!)
54  physVol->SetName(PhotInSlabName);     // Name of the positioned slab
55}
56
57G4Material* PhotInGapParameterisation::
58                      ComputeMaterial(const G4int, G4VPhysicalVolume*, const G4VTouchable*)
59{
60  return gapMaterial;                   // Material can be different for different slabs
61}
62 
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