253 lines
10 KiB
C++
253 lines
10 KiB
C++
//
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// ********************************************************************
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// * License and Disclaimer *
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// * *
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// * The Geant4 software is copyright of the Copyright Holders of *
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// * the Geant4 Collaboration. It is provided under the terms and *
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// * conditions of the Geant4 Software License, included in the file *
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// * LICENSE and available at http://cern.ch/geant4/license . These *
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// * include a list of copyright holders. *
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// * *
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// * Neither the authors of this software system, nor their employing *
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// * institutes,nor the agencies providing financial support for this *
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// * work make any representation or warranty, express or implied, *
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// * regarding this software system or assume any liability for its *
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// * use. Please see the license in the file LICENSE and URL above *
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// * for the full disclaimer and the limitation of liability. *
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// * *
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// * This code implementation is the result of the scientific and *
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// * technical work of the GEANT4 collaboration. *
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// * By using, copying, modifying or distributing the software (or *
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// * any work based on the software) you agree to acknowledge its *
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// * use in resulting scientific publications, and indicate your *
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// * acceptance of all terms of the Geant4 Software license. *
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// ********************************************************************
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//
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// $Id: RE01DetectorConstruction.cc,v 1.3 2006/06/29 17:43:46 gunter Exp $
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// GEANT4 tag $Name: geant4-09-02 $
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//
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#include "RE01DetectorConstruction.hh"
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#include "RE01TrackerSD.hh"
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#include "RE01CalorimeterSD.hh"
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#include "RE01CalorimeterROGeometry.hh"
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#include "RE01TrackerParametrisation.hh"
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#include "RE01CalorimeterParametrisation.hh"
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#include "RE01Field.hh"
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#include "RE01RegionInformation.hh"
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#include "G4Material.hh"
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#include "G4MaterialTable.hh"
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#include "G4Element.hh"
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#include "G4ElementTable.hh"
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#include "G4Box.hh"
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#include "G4Tubs.hh"
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#include "G4LogicalVolume.hh"
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#include "G4ThreeVector.hh"
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#include "G4PVPlacement.hh"
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#include "G4PVParameterised.hh"
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#include "G4Transform3D.hh"
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#include "G4RotationMatrix.hh"
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#include "G4FieldManager.hh"
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#include "G4TransportationManager.hh"
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#include "G4SDManager.hh"
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#include "G4VisAttributes.hh"
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#include "G4Colour.hh"
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#include "G4Region.hh"
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#include "G4RegionStore.hh"
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RE01DetectorConstruction::RE01DetectorConstruction()
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{
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#include "RE01DetectorParameterDef.icc"
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}
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RE01DetectorConstruction::~RE01DetectorConstruction()
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{;}
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G4VPhysicalVolume* RE01DetectorConstruction::Construct()
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{
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//-------------------------------------------------------------------------
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// Magnetic field
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//-------------------------------------------------------------------------
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/******************************************************************
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static G4bool fieldIsInitialized = false;
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if(!fieldIsInitialized)
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{
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RE01Field* myField = new RE01Field;
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G4FieldManager* fieldMgr
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= G4TransportationManager::GetTransportationManager()
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->GetFieldManager();
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fieldMgr->SetDetectorField(myField);
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fieldMgr->CreateChordFinder(myField);
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fieldIsInitialized = true;
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}
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*******************************************************************/
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//-------------------------------------------------------------------------
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// Materials
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//-------------------------------------------------------------------------
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G4double a, iz, z, density;
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G4String name, symbol;
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G4int nel;
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a = 1.01*g/mole;
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G4Element* elH = new G4Element(name="Hydrogen", symbol="H", iz=1., a);
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a = 12.01*g/mole;
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G4Element* elC = new G4Element(name="Carbon", symbol="C", iz=6., a);
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a = 14.01*g/mole;
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G4Element* elN = new G4Element(name="Nitrogen", symbol="N", iz=7., a);
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a = 16.00*g/mole;
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G4Element* elO = new G4Element(name="Oxygen", symbol="O", iz=8., a);
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density = 1.29e-03*g/cm3;
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G4Material* Air = new G4Material(name="Air", density, nel=2);
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Air->AddElement(elN, .7);
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Air->AddElement(elO, .3);
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a = 207.19*g/mole;
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density = 11.35*g/cm3;
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G4Material* Lead = new G4Material(name="Lead", z=82., a, density);
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a = 39.95*g/mole;
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density = 1.782e-03*g/cm3;
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G4Material* Ar = new G4Material(name="ArgonGas", z=18., a, density);
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a = 28.09*g/mole;
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density = 2.33*g/cm3;
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G4Material * Silicon = new G4Material(name="Silicon", z=14., a, density);
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density = 1.032*g/cm3;
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G4Material* Scinti = new G4Material(name="Scintillator", density, nel=2);
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Scinti->AddElement(elC, 9);
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Scinti->AddElement(elH, 10);
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//-------------------------------------------------------------------------
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// Detector geometry
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//-------------------------------------------------------------------------
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//------------------------------ experimental hall
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G4Box * experimentalHall_box
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= new G4Box("expHall_b",expHall_x,expHall_y,expHall_z);
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G4LogicalVolume * experimentalHall_log
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= new G4LogicalVolume(experimentalHall_box,Air,"expHall_L",0,0,0);
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G4VPhysicalVolume * experimentalHall_phys
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= new G4PVPlacement(0,G4ThreeVector(),experimentalHall_log,"expHall_P",
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0,false,0);
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G4VisAttributes* experimentalHallVisAtt
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= new G4VisAttributes(G4Colour(1.0,1.0,1.0));
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experimentalHallVisAtt->SetForceWireframe(true);
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experimentalHall_log->SetVisAttributes(experimentalHallVisAtt);
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G4Region* defaultRegion = (*(G4RegionStore::GetInstance()))[0];
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RE01RegionInformation* defaultRInfo = new RE01RegionInformation();
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defaultRInfo->SetWorld();
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defaultRegion->SetUserInformation(defaultRInfo);
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//------------------------------ tracker
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G4VSolid * tracker_tubs
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= new G4Tubs("trkTubs_tubs",trkTubs_rmin,trkTubs_rmax,trkTubs_dz,
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trkTubs_sphi,trkTubs_dphi);
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G4LogicalVolume * tracker_log
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= new G4LogicalVolume(tracker_tubs,Ar,"trackerT_L",0,0,0);
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// G4VPhysicalVolume * tracker_phys =
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new G4PVPlacement(0,G4ThreeVector(),tracker_log,"tracker_phys",
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experimentalHall_log,false,0);
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G4VisAttributes* tracker_logVisAtt
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= new G4VisAttributes(G4Colour(1.0,0.0,1.0));
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tracker_logVisAtt->SetForceWireframe(true);
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tracker_log->SetVisAttributes(tracker_logVisAtt);
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G4Region* trackerRegion = new G4Region("TrackerRegion");
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RE01RegionInformation* trackerInfo = new RE01RegionInformation();
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trackerInfo->SetTracker();
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trackerRegion->SetUserInformation(trackerInfo);
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tracker_log->SetRegion(trackerRegion);
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trackerRegion->AddRootLogicalVolume(tracker_log);
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//------------------------------ tracker layers
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// As an example for Parameterised volume
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// dummy values for G4Tubs -- modified by parameterised volume
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G4VSolid * trackerLayer_tubs
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= new G4Tubs("trackerLayer_tubs",trkTubs_rmin,trkTubs_rmax,trkTubs_dz,
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trkTubs_sphi,trkTubs_dphi);
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G4LogicalVolume * trackerLayer_log
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= new G4LogicalVolume(trackerLayer_tubs,Silicon,"trackerB_L",0,0,0);
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G4VPVParameterisation * trackerParam
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= new RE01TrackerParametrisation;
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// dummy value : kXAxis -- modified by parameterised volume
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// G4VPhysicalVolume *trackerLayer_phys =
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new G4PVParameterised("trackerLayer_phys",trackerLayer_log,tracker_log,
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kXAxis, notrkLayers, trackerParam);
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G4VisAttributes* trackerLayer_logVisAtt
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= new G4VisAttributes(G4Colour(0.5,0.0,1.0));
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trackerLayer_logVisAtt->SetForceWireframe(true);
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trackerLayer_log->SetVisAttributes(trackerLayer_logVisAtt);
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//------------------------------ calorimeter
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G4VSolid * calorimeter_tubs
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= new G4Tubs("calorimeter_tubs",caloTubs_rmin,caloTubs_rmax,
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caloTubs_dz,caloTubs_sphi,caloTubs_dphi);
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G4LogicalVolume * calorimeter_log
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= new G4LogicalVolume(calorimeter_tubs,Scinti,"caloT_L",0,0,0);
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// G4VPhysicalVolume * calorimeter_phys =
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new G4PVPlacement(0,G4ThreeVector(),calorimeter_log,"caloM_P",
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experimentalHall_log,false,0);
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G4VisAttributes* calorimeter_logVisATT
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= new G4VisAttributes(G4Colour(1.0,1.0,0.0));
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calorimeter_logVisATT->SetForceWireframe(true);
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calorimeter_log->SetVisAttributes(calorimeter_logVisATT);
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G4Region* calorimeterRegion = new G4Region("CalorimeterRegion");
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RE01RegionInformation* calorimeterInfo = new RE01RegionInformation();
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calorimeterInfo->SetCalorimeter();
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calorimeterRegion->SetUserInformation(calorimeterInfo);
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calorimeter_log->SetRegion(calorimeterRegion);
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calorimeterRegion->AddRootLogicalVolume(calorimeter_log);
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//------------------------------- Lead layers
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// As an example for Parameterised volume
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// dummy values for G4Tubs -- modified by parameterised volume
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G4VSolid * caloLayer_tubs
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= new G4Tubs("caloLayer_tubs",caloRing_rmin,caloRing_rmax,
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caloRing_dz,caloRing_sphi,caloRing_dphi);
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G4LogicalVolume * caloLayer_log
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= new G4LogicalVolume(caloLayer_tubs,Lead,"caloR_L",0,0,0);
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G4VPVParameterisation * calorimeterParam
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= new RE01CalorimeterParametrisation;
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// dummy value : kXAxis -- modified by parameterised volume
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// G4VPhysicalVolume * caloLayer_phys =
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new G4PVParameterised("caloLayer_phys",caloLayer_log,calorimeter_log,
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kXAxis, nocaloLayers, calorimeterParam);
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G4VisAttributes* caloLayer_logVisAtt
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= new G4VisAttributes(G4Colour(0.7,1.0,0.0));
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caloLayer_logVisAtt->SetForceWireframe(true);
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caloLayer_log->SetVisAttributes(caloLayer_logVisAtt);
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//------------------------------------------------------------------
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// Sensitive Detector
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//------------------------------------------------------------------
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G4SDManager* SDman = G4SDManager::GetSDMpointer();
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G4String trackerSDname = "/mydet/tracker";
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RE01TrackerSD * trackerSD = new RE01TrackerSD(trackerSDname);
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SDman->AddNewDetector(trackerSD);
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trackerLayer_log->SetSensitiveDetector(trackerSD);
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G4String calorimeterSDname = "/mydet/calorimeter";
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RE01CalorimeterSD * calorimeterSD = new RE01CalorimeterSD(calorimeterSDname);
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G4String ROgeometryName = "CalorimeterROGeom";
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G4VReadOutGeometry* calRO = new RE01CalorimeterROGeometry(ROgeometryName);
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calRO->BuildROGeometry();
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calorimeterSD->SetROgeometry(calRO);
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SDman->AddNewDetector(calorimeterSD);
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calorimeter_log->SetSensitiveDetector(calorimeterSD);
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return experimentalHall_phys;
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}
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