Geant4 Cross Reference

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Geant4/examples/extended/optical/LXe/src/LXeWLSFiber.cc

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 26 //
 27 /// \file optical/LXe/src/LXeWLSFiber.cc
 28 /// \brief Implementation of the LXeWLSFiber class
 29 //
 30 //
 31 #include "LXeWLSFiber.hh"
 32 
 33 #include "G4Box.hh"
 34 #include "G4LogicalVolume.hh"
 35 #include "G4Material.hh"
 36 #include "G4SystemOfUnits.hh"
 37 #include "G4Tubs.hh"
 38 #include "globals.hh"
 39 
 40 G4LogicalVolume* LXeWLSFiber::fClad2_log = nullptr;
 41 
 42 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
 43 
 44 LXeWLSFiber::LXeWLSFiber(G4RotationMatrix* pRot, const G4ThreeVector& tlate,
 45                          G4LogicalVolume* pMotherLogical, G4bool pMany, G4int pCopyNo,
 46                          LXeDetectorConstruction* c)
 47   : G4PVPlacement(
 48       pRot, tlate,
 49       new G4LogicalVolume(new G4Box("temp", 1., 1., 1.), G4Material::GetMaterial("Vacuum"), "temp"),
 50       "Cladding2", pMotherLogical, pMany, pCopyNo),
 51     fConstructor(c)
 52 {
 53   CopyValues();
 54 
 55   // The Fiber
 56   //
 57   auto fiber_tube =
 58     new G4Tubs("Fiber", fFiber_rmin, fFiber_rmax, fFiber_z, fFiber_sphi, fFiber_ephi);
 59 
 60   auto fiber_log = new G4LogicalVolume(fiber_tube, G4Material::GetMaterial("PMMA"), "Fiber");
 61 
 62   // Cladding (first layer)
 63   //
 64   auto clad1_tube =
 65     new G4Tubs("Cladding1", fClad1_rmin, fClad1_rmax, fClad1_z, fClad1_sphi, fClad1_ephi);
 66 
 67   auto clad1_log =
 68     new G4LogicalVolume(clad1_tube, G4Material::GetMaterial("Pethylene1"), "Cladding1");
 69 
 70   // Cladding (second layer)
 71   //
 72   auto clad2_tube =
 73     new G4Tubs("Cladding2", fClad2_rmin, fClad2_rmax, fClad2_z, fClad2_sphi, fClad2_ephi);
 74 
 75   fClad2_log = new G4LogicalVolume(clad2_tube, G4Material::GetMaterial("Pethylene2"), "Cladding2");
 76 
 77   new G4PVPlacement(nullptr, G4ThreeVector(0., 0., 0.), fiber_log, "Fiber", clad1_log, false, 0);
 78   new G4PVPlacement(nullptr, G4ThreeVector(0., 0., 0.), clad1_log, "Cladding1", fClad2_log, false,
 79                     0);
 80 
 81   SetLogicalVolume(fClad2_log);
 82 }
 83 
 84 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
 85 
 86 void LXeWLSFiber::CopyValues()
 87 {
 88   fFiber_rmin = 0.0 * cm;
 89   fFiber_rmax = 0.1 * cm;
 90   fFiber_z = fConstructor->GetScintX() / 2.;
 91   fFiber_sphi = 0.0 * deg;
 92   fFiber_ephi = 360. * deg;
 93 
 94   fClad1_rmin = 0.;  // fFiber_rmax;
 95   fClad1_rmax = fFiber_rmax + 0.015 * fFiber_rmax;
 96 
 97   fClad1_z = fFiber_z;
 98   fClad1_sphi = fFiber_sphi;
 99   fClad1_ephi = fFiber_ephi;
100 
101   fClad2_rmin = 0.;  // fClad1_rmax;
102   fClad2_rmax = fClad1_rmax + 0.015 * fFiber_rmax;
103 
104   fClad2_z = fFiber_z;
105   fClad2_sphi = fFiber_sphi;
106   fClad2_ephi = fFiber_ephi;
107 }
108