source: trunk/examples/extended/parallel/ParN04/src/ExN04CalorimeterROGeometry.cc

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

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26#include "ExN04CalorimeterROGeometry.hh"
27#include "ExN04DummySD.hh"
28
29#include "G4LogicalVolume.hh"
30#include "G4VPhysicalVolume.hh"
31#include "G4PVPlacement.hh"
32#include "G4PVReplica.hh"
33#include "G4SDManager.hh"
34#include "G4Box.hh"
35#include "G4Tubs.hh"
36#include "G4ThreeVector.hh"
37#include "G4Material.hh"
38 
39
40ExN04CalorimeterROGeometry::ExN04CalorimeterROGeometry()
41  : G4VReadOutGeometry()
42{
43#include "ExN04DetectorParameterDef.icc"
44}
45
46
47ExN04CalorimeterROGeometry::ExN04CalorimeterROGeometry(G4String aString)
48  : G4VReadOutGeometry(aString)
49{
50#include "ExN04DetectorParameterDef.icc"
51}
52
53ExN04CalorimeterROGeometry::~ExN04CalorimeterROGeometry()
54{
55}
56
57G4VPhysicalVolume* ExN04CalorimeterROGeometry::Build()
58{
59  // A dummy material is used to fill the volumes of the readout geometry.
60  // ( It will be allowed to set a NULL pointer in volumes of such virtual
61  // division in future, since this material is irrelevant for tracking.)
62  G4Material* dummyMat  = new G4Material(name="dummyMat", 1., 1.*g/mole, 1.*g/cm3);
63
64  //Builds the ReadOut World:
65  G4Box *ROWorldBox = new G4Box("ROWorldBox", expHall_x, expHall_y, expHall_z);
66  G4LogicalVolume *ROWorldLog = new G4LogicalVolume(ROWorldBox, dummyMat,
67                                                    "ROWorldLogical", 0, 0, 0);
68  G4PVPlacement *ROWorldPhys = new G4PVPlacement(0,G4ThreeVector(),
69                                                 "ROWorldPhysical",
70                                                 ROWorldLog,
71                                                 0,false,0);
72  // Calorimeter volume:
73  G4VSolid * caloROtub
74    = new G4Tubs("caloROtub",caloTubs_rmin,caloTubs_rmax,
75                 caloTubs_dz,caloTubs_sphi,caloTubs_dphi);
76  G4LogicalVolume * caloROlog
77    = new G4LogicalVolume(caloROtub,dummyMat,"caloROlogical",0,0,0);
78  G4VPhysicalVolume * caloROphys
79    = new G4PVPlacement(0,G4ThreeVector(),"calROphysical",caloROlog,
80                        ROWorldPhys,false,0);
81
82  // -------------------------------
83  // Calorimeter readout division:
84  // -------------------------------
85  // Phi division first: 48 sectors
86  G4VSolid * caloROphiDivisionTub
87    = new G4Tubs("caloROphiDivision", caloCell_rmin, caloCell_rmax,
88                 caloCell_dz, caloCell_sphi, caloCell_dphi);
89  G4LogicalVolume * caloROphiDivisionLog
90    = new G4LogicalVolume(caloROphiDivisionTub, dummyMat, "caloROphiDivisionLogical",0,0,0);
91  G4VPhysicalVolume * caloROphiDivisionPhys
92    = new G4PVReplica("caloROphiDivisionPhysical", caloROphiDivisionLog, caloROphys,
93                      kPhi, segmentsinPhi, caloCell_dphi);
94  // then z division: 20 slices:
95  G4VSolid * caloROcellTub
96    = new G4Tubs("caloROcellTub", caloRing_rmin, caloRing_rmax,
97                 caloRing_dz, caloRing_sphi, caloRing_dphi);
98  G4LogicalVolume * caloROcellLog
99    = new G4LogicalVolume(caloROcellTub, dummyMat, "caloROcellLogical",0,0,0);
100//  G4VPhysicalVolume * caloROcellPhys =
101      new G4PVReplica("caloROcellPhysical", caloROcellLog, caloROphiDivisionPhys,
102                      kZAxis, segmentsinZ,2.*caloRing_dz);
103 
104
105  //Flags the cells as sensitive .The pointer here serves
106  // as a flag only to check for sensitivity.
107  // (Could we make it by a simple cast of a non-NULL value ?)
108  ExN04DummySD * dummySensi = new ExN04DummySD;
109  caloROcellLog->SetSensitiveDetector(dummySensi);
110
111  return ROWorldPhys;
112}
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