source: trunk/examples/extended/runAndEvent/RE01/src/RE01CalorimeterROGeometry.cc@ 1036

Last change on this file since 1036 was 807, checked in by garnier, 17 years ago

update

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25//
26// $Id: RE01CalorimeterROGeometry.cc,v 1.2 2006/06/29 17:43:39 gunter Exp $
27// GEANT4 tag $Name: $
28//
29
30#include "RE01CalorimeterROGeometry.hh"
31#include "RE01DummySD.hh"
32
33#include "G4LogicalVolume.hh"
34#include "G4VPhysicalVolume.hh"
35#include "G4PVPlacement.hh"
36#include "G4PVReplica.hh"
37#include "G4SDManager.hh"
38#include "G4Box.hh"
39#include "G4Tubs.hh"
40#include "G4ThreeVector.hh"
41#include "G4Material.hh"
42
43
44RE01CalorimeterROGeometry::RE01CalorimeterROGeometry()
45 : G4VReadOutGeometry()
46{
47#include "RE01DetectorParameterDef.icc"
48}
49
50
51RE01CalorimeterROGeometry::RE01CalorimeterROGeometry(G4String aString)
52 : G4VReadOutGeometry(aString)
53{
54#include "RE01DetectorParameterDef.icc"
55}
56
57RE01CalorimeterROGeometry::~RE01CalorimeterROGeometry()
58{
59}
60
61G4VPhysicalVolume* RE01CalorimeterROGeometry::Build()
62{
63 // A dummy material is used to fill the volumes of the readout geometry.
64 // ( It will be allowed to set a NULL pointer in volumes of such virtual
65 // division in future, since this material is irrelevant for tracking.)
66 G4Material* dummyMat = new G4Material(name="dummyMat", 1., 1.*g/mole, 1.*g/cm3);
67
68 //Builds the ReadOut World:
69 G4Box *ROWorldBox = new G4Box("ROWorldBox", expHall_x, expHall_y, expHall_z);
70 G4LogicalVolume *ROWorldLog = new G4LogicalVolume(ROWorldBox, dummyMat,
71 "ROWorldLogical", 0, 0, 0);
72 G4PVPlacement *ROWorldPhys = new G4PVPlacement(0,G4ThreeVector(),
73 "ROWorldPhysical",
74 ROWorldLog,
75 0,false,0);
76 // Calorimeter volume:
77 G4VSolid * caloROtub
78 = new G4Tubs("caloROtub",caloTubs_rmin,caloTubs_rmax,
79 caloTubs_dz,caloTubs_sphi,caloTubs_dphi);
80 G4LogicalVolume * caloROlog
81 = new G4LogicalVolume(caloROtub,dummyMat,"caloROlogical",0,0,0);
82 G4VPhysicalVolume * caloROphys
83 = new G4PVPlacement(0,G4ThreeVector(),"calROphysical",caloROlog,
84 ROWorldPhys,false,0);
85
86 // -------------------------------
87 // Calorimeter readout division:
88 // -------------------------------
89 // Phi division first: 48 sectors
90 G4VSolid * caloROphiDivisionTub
91 = new G4Tubs("caloROphiDivision", caloCell_rmin, caloCell_rmax,
92 caloCell_dz, caloCell_sphi, caloCell_dphi);
93 G4LogicalVolume * caloROphiDivisionLog
94 = new G4LogicalVolume(caloROphiDivisionTub, dummyMat, "caloROphiDivisionLogical",0,0,0);
95 G4VPhysicalVolume * caloROphiDivisionPhys
96 = new G4PVReplica("caloROphiDivisionPhysical", caloROphiDivisionLog, caloROphys,
97 kPhi, segmentsinPhi, caloCell_dphi);
98 // then z division: 20 slices:
99 G4VSolid * caloROcellTub
100 = new G4Tubs("caloROcellTub", caloRing_rmin, caloRing_rmax,
101 caloRing_dz, caloRing_sphi, caloRing_dphi);
102 G4LogicalVolume * caloROcellLog
103 = new G4LogicalVolume(caloROcellTub, dummyMat, "caloROcellLogical",0,0,0);
104// G4VPhysicalVolume * caloROcellPhys =
105 new G4PVReplica("caloROcellPhysical", caloROcellLog, caloROphiDivisionPhys,
106 kZAxis, segmentsinZ,2.*caloRing_dz);
107
108
109 //Flags the cells as sensitive .The pointer here serves
110 // as a flag only to check for sensitivity.
111 // (Could we make it by a simple cast of a non-NULL value ?)
112 RE01DummySD * dummySensi = new RE01DummySD;
113 caloROcellLog->SetSensitiveDetector(dummySensi);
114
115 return ROWorldPhys;
116}
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