Import Geant4 11.3.0.beta source tree
This commit is contained in:
@@ -28,9 +28,10 @@
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/// \brief Implementation of the B4d::ActionInitialization class
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#include "ActionInitialization.hh"
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#include "EventAction.hh"
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#include "PrimaryGeneratorAction.hh"
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#include "RunAction.hh"
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#include "EventAction.hh"
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using namespace B4;
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@@ -55,4 +56,4 @@ void ActionInitialization::Build() const
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//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
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}
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} // namespace B4d
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@@ -29,36 +29,31 @@
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#include "DetectorConstruction.hh"
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#include "G4Material.hh"
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#include "G4NistManager.hh"
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#include "G4Box.hh"
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#include "G4LogicalVolume.hh"
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#include "G4PVPlacement.hh"
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#include "G4PVReplica.hh"
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#include "G4GlobalMagFieldMessenger.hh"
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#include "G4AutoDelete.hh"
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#include "G4SDManager.hh"
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#include "G4SDChargedFilter.hh"
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#include "G4Box.hh"
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#include "G4Colour.hh"
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#include "G4GlobalMagFieldMessenger.hh"
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#include "G4LogicalVolume.hh"
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#include "G4Material.hh"
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#include "G4MultiFunctionalDetector.hh"
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#include "G4VPrimitiveScorer.hh"
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#include "G4NistManager.hh"
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#include "G4PSEnergyDeposit.hh"
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#include "G4PSTrackLength.hh"
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#include "G4VisAttributes.hh"
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#include "G4Colour.hh"
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#include "G4PVPlacement.hh"
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#include "G4PVReplica.hh"
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#include "G4PhysicalConstants.hh"
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#include "G4SDChargedFilter.hh"
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#include "G4SDManager.hh"
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#include "G4SystemOfUnits.hh"
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#include "G4VPrimitiveScorer.hh"
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#include "G4VisAttributes.hh"
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namespace B4d
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{
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//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
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G4ThreadLocal
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G4GlobalMagFieldMessenger* DetectorConstruction::fMagFieldMessenger = nullptr;
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G4ThreadLocal G4GlobalMagFieldMessenger* DetectorConstruction::fMagFieldMessenger = nullptr;
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//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
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@@ -83,12 +78,12 @@ void DetectorConstruction::DefineMaterials()
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G4double a; // mass of a mole;
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G4double z; // z=mean number of protons;
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G4double density;
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new G4Material("liquidArgon", z=18., a= 39.95*g/mole, density= 1.390*g/cm3);
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// The argon by NIST Manager is a gas with a different density
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new G4Material("liquidArgon", z = 18., a = 39.95 * g / mole, density = 1.390 * g / cm3);
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// The argon by NIST Manager is a gas with a different density
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// Vacuum
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new G4Material("Galactic", z=1., a=1.01*g/mole,density= universe_mean_density,
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kStateGas, 2.73*kelvin, 3.e-18*pascal);
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new G4Material("Galactic", z = 1., a = 1.01 * g / mole, density = universe_mean_density,
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kStateGas, 2.73 * kelvin, 3.e-18 * pascal);
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// Print materials
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G4cout << *(G4Material::GetMaterialTable()) << G4endl;
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@@ -99,148 +94,128 @@ void DetectorConstruction::DefineMaterials()
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G4VPhysicalVolume* DetectorConstruction::DefineVolumes()
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{
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// Geometry parameters
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G4int nofLayers = 10;
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G4double absoThickness = 10.*mm;
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G4double gapThickness = 5.*mm;
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G4double calorSizeXY = 10.*cm;
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G4int nofLayers = 10;
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G4double absoThickness = 10. * mm;
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G4double gapThickness = 5. * mm;
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G4double calorSizeXY = 10. * cm;
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auto layerThickness = absoThickness + gapThickness;
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auto calorThickness = nofLayers * layerThickness;
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auto worldSizeXY = 1.2 * calorSizeXY;
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auto worldSizeZ = 1.2 * calorThickness;
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auto layerThickness = absoThickness + gapThickness;
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auto calorThickness = nofLayers * layerThickness;
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auto worldSizeXY = 1.2 * calorSizeXY;
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auto worldSizeZ = 1.2 * calorThickness;
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// Get materials
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auto defaultMaterial = G4Material::GetMaterial("Galactic");
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auto absorberMaterial = G4Material::GetMaterial("G4_Pb");
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auto gapMaterial = G4Material::GetMaterial("liquidArgon");
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if ( ! defaultMaterial || ! absorberMaterial || ! gapMaterial ) {
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if (!defaultMaterial || !absorberMaterial || !gapMaterial) {
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G4ExceptionDescription msg;
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msg << "Cannot retrieve materials already defined.";
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G4Exception("DetectorConstruction::DefineVolumes()",
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"MyCode0001", FatalException, msg);
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G4Exception("DetectorConstruction::DefineVolumes()", "MyCode0001", FatalException, msg);
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}
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//
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// World
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//
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auto worldS
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= new G4Box("World", // its name
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worldSizeXY/2, worldSizeXY/2, worldSizeZ/2); // its size
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auto worldS = new G4Box("World", // its name
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worldSizeXY / 2, worldSizeXY / 2, worldSizeZ / 2); // its size
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auto worldLV
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= new G4LogicalVolume(
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worldS, // its solid
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defaultMaterial, // its material
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"World"); // its name
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auto worldLV = new G4LogicalVolume(worldS, // its solid
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defaultMaterial, // its material
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"World"); // its name
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auto worldPV = new G4PVPlacement(nullptr, // no rotation
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G4ThreeVector(), // at (0,0,0)
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worldLV, // its logical volume
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"World", // its name
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nullptr, // its mother volume
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false, // no boolean operation
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0, // copy number
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fCheckOverlaps); // checking overlaps
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G4ThreeVector(), // at (0,0,0)
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worldLV, // its logical volume
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"World", // its name
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nullptr, // its mother volume
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false, // no boolean operation
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0, // copy number
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fCheckOverlaps); // checking overlaps
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//
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// Calorimeter
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//
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auto calorimeterS
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= new G4Box("Calorimeter", // its name
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calorSizeXY/2, calorSizeXY/2, calorThickness/2); // its size
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auto calorimeterS = new G4Box("Calorimeter", // its name
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calorSizeXY / 2, calorSizeXY / 2, calorThickness / 2); // its size
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auto calorLV
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= new G4LogicalVolume(
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calorimeterS, // its solid
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defaultMaterial, // its material
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"Calorimeter"); // its name
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auto calorLV = new G4LogicalVolume(calorimeterS, // its solid
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defaultMaterial, // its material
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"Calorimeter"); // its name
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new G4PVPlacement(nullptr, // no rotation
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G4ThreeVector(), // at (0,0,0)
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calorLV, // its logical volume
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"Calorimeter", // its name
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worldLV, // its mother volume
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false, // no boolean operation
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0, // copy number
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fCheckOverlaps); // checking overlaps
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G4ThreeVector(), // at (0,0,0)
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calorLV, // its logical volume
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"Calorimeter", // its name
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worldLV, // its mother volume
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false, // no boolean operation
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0, // copy number
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fCheckOverlaps); // checking overlaps
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//
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// Layer
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//
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auto layerS
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= new G4Box("Layer", // its name
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calorSizeXY/2, calorSizeXY/2, layerThickness/2); // its size
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auto layerS = new G4Box("Layer", // its name
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calorSizeXY / 2, calorSizeXY / 2, layerThickness / 2); // its size
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auto layerLV
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= new G4LogicalVolume(
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layerS, // its solid
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defaultMaterial, // its material
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"Layer"); // its name
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auto layerLV = new G4LogicalVolume(layerS, // its solid
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defaultMaterial, // its material
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"Layer"); // its name
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new G4PVReplica(
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"Layer", // its name
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layerLV, // its logical volume
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calorLV, // its mother
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kZAxis, // axis of replication
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nofLayers, // number of replica
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layerThickness); // witdth of replica
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new G4PVReplica("Layer", // its name
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layerLV, // its logical volume
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calorLV, // its mother
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kZAxis, // axis of replication
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nofLayers, // number of replica
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layerThickness); // witdth of replica
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//
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// Absorber
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//
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auto absorberS
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= new G4Box("Abso", // its name
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calorSizeXY/2, calorSizeXY/2, absoThickness/2); // its size
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auto absorberS = new G4Box("Abso", // its name
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calorSizeXY / 2, calorSizeXY / 2, absoThickness / 2); // its size
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auto absorberLV
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= new G4LogicalVolume(
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absorberS, // its solid
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absorberMaterial, // its material
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"AbsoLV"); // its name
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auto absorberLV = new G4LogicalVolume(absorberS, // its solid
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absorberMaterial, // its material
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"AbsoLV"); // its name
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new G4PVPlacement(nullptr, // no rotation
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G4ThreeVector(0., 0., -gapThickness / 2), // its position
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absorberLV, // its logical volume
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"Abso", // its name
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layerLV, // its mother volume
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false, // no boolean operation
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0, // copy number
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fCheckOverlaps); // checking overlaps
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new G4PVPlacement(nullptr, // no rotation
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G4ThreeVector(0., 0., -gapThickness / 2), // its position
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absorberLV, // its logical volume
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"Abso", // its name
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layerLV, // its mother volume
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false, // no boolean operation
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0, // copy number
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fCheckOverlaps); // checking overlaps
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//
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// Gap
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//
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auto gapS
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= new G4Box("Gap", // its name
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calorSizeXY/2, calorSizeXY/2, gapThickness/2); // its size
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auto gapS = new G4Box("Gap", // its name
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calorSizeXY / 2, calorSizeXY / 2, gapThickness / 2); // its size
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auto gapLV
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= new G4LogicalVolume(
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gapS, // its solid
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gapMaterial, // its material
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"GapLV"); // its name
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auto gapLV = new G4LogicalVolume(gapS, // its solid
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gapMaterial, // its material
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"GapLV"); // its name
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new G4PVPlacement(nullptr, // no rotation
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G4ThreeVector(0., 0., absoThickness / 2), // its position
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gapLV, // its logical volume
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"Gap", // its name
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layerLV, // its mother volume
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false, // no boolean operation
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0, // copy number
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fCheckOverlaps); // checking overlaps
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new G4PVPlacement(nullptr, // no rotation
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G4ThreeVector(0., 0., absoThickness / 2), // its position
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gapLV, // its logical volume
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"Gap", // its name
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layerLV, // its mother volume
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false, // no boolean operation
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0, // copy number
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fCheckOverlaps); // checking overlaps
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//
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// print parameters
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//
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G4cout
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<< G4endl
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<< "------------------------------------------------------------" << G4endl
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<< "---> The calorimeter is " << nofLayers << " layers of: [ "
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<< absoThickness/mm << "mm of " << absorberMaterial->GetName()
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<< " + "
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<< gapThickness/mm << "mm of " << gapMaterial->GetName() << " ] " << G4endl
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<< "------------------------------------------------------------" << G4endl;
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G4cout << G4endl << "------------------------------------------------------------" << G4endl
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<< "---> The calorimeter is " << nofLayers << " layers of: [ " << absoThickness / mm
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<< "mm of " << absorberMaterial->GetName() << " + " << gapThickness / mm << "mm of "
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<< gapMaterial->GetName() << " ] " << G4endl
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<< "------------------------------------------------------------" << G4endl;
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//
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// Visualization attributes
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@@ -274,10 +249,10 @@ void DetectorConstruction::ConstructSDandField()
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primitive = new G4PSTrackLength("TrackLength");
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auto charged = new G4SDChargedFilter("chargedFilter");
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primitive ->SetFilter(charged);
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primitive->SetFilter(charged);
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absDetector->RegisterPrimitive(primitive);
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SetSensitiveDetector("AbsoLV",absDetector);
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SetSensitiveDetector("AbsoLV", absDetector);
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// declare Gap as a MultiFunctionalDetector scorer
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//
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@@ -288,10 +263,10 @@ void DetectorConstruction::ConstructSDandField()
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gapDetector->RegisterPrimitive(primitive);
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primitive = new G4PSTrackLength("TrackLength");
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primitive ->SetFilter(charged);
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primitive->SetFilter(charged);
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gapDetector->RegisterPrimitive(primitive);
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SetSensitiveDetector("GapLV",gapDetector);
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SetSensitiveDetector("GapLV", gapDetector);
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//
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// Magnetic field
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@@ -309,4 +284,4 @@ void DetectorConstruction::ConstructSDandField()
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//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
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}
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} // namespace B4d
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@@ -30,13 +30,13 @@
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#include "EventAction.hh"
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#include "G4AnalysisManager.hh"
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#include "G4RunManager.hh"
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#include "G4Event.hh"
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#include "G4SDManager.hh"
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#include "G4HCofThisEvent.hh"
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#include "G4RunManager.hh"
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#include "G4SDManager.hh"
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#include "G4THitsMap.hh"
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#include "G4UnitsTable.hh"
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#include "Randomize.hh"
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#include <iomanip>
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namespace B4d
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@@ -44,19 +44,14 @@ namespace B4d
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//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
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G4THitsMap<G4double>*
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EventAction::GetHitsCollection(G4int hcID,
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const G4Event* event) const
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G4THitsMap<G4double>* EventAction::GetHitsCollection(G4int hcID, const G4Event* event) const
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{
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auto hitsCollection
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= static_cast<G4THitsMap<G4double>*>(
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event->GetHCofThisEvent()->GetHC(hcID));
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auto hitsCollection = static_cast<G4THitsMap<G4double>*>(event->GetHCofThisEvent()->GetHC(hcID));
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if ( ! hitsCollection ) {
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if (!hitsCollection) {
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G4ExceptionDescription msg;
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msg << "Cannot access hitsCollection ID " << hcID;
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G4Exception("EventAction::GetHitsCollection()",
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"MyCode0003", FatalException, msg);
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G4Exception("EventAction::GetHitsCollection()", "MyCode0003", FatalException, msg);
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}
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return hitsCollection;
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@@ -67,7 +62,7 @@ EventAction::GetHitsCollection(G4int hcID,
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G4double EventAction::GetSum(G4THitsMap<G4double>* hitsMap) const
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{
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G4double sumValue = 0.;
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for ( auto it : *hitsMap->GetMap() ) {
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for (auto it : *hitsMap->GetMap()) {
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// hitsMap->GetMap() returns the map of std::map<G4int, G4double*>
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sumValue += *(it.second);
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}
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@@ -76,44 +71,32 @@ G4double EventAction::GetSum(G4THitsMap<G4double>* hitsMap) const
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//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
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void EventAction::PrintEventStatistics(
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G4double absoEdep, G4double absoTrackLength,
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G4double gapEdep, G4double gapTrackLength) const
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void EventAction::PrintEventStatistics(G4double absoEdep, G4double absoTrackLength,
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G4double gapEdep, G4double gapTrackLength) const
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{
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// Print event statistics
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//
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G4cout
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<< " Absorber: total energy: "
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<< std::setw(7) << G4BestUnit(absoEdep, "Energy")
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<< " total track length: "
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<< std::setw(7) << G4BestUnit(absoTrackLength, "Length")
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<< G4endl
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<< " Gap: total energy: "
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<< std::setw(7) << G4BestUnit(gapEdep, "Energy")
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<< " total track length: "
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<< std::setw(7) << G4BestUnit(gapTrackLength, "Length")
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<< G4endl;
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G4cout << " Absorber: total energy: " << std::setw(7) << G4BestUnit(absoEdep, "Energy")
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<< " total track length: " << std::setw(7) << G4BestUnit(absoTrackLength, "Length")
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<< G4endl << " Gap: total energy: " << std::setw(7) << G4BestUnit(gapEdep, "Energy")
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<< " total track length: " << std::setw(7) << G4BestUnit(gapTrackLength, "Length")
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<< G4endl;
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}
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//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
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||||
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void EventAction::BeginOfEventAction(const G4Event* /*event*/)
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{}
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void EventAction::BeginOfEventAction(const G4Event* /*event*/) {}
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||||
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||||
//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
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||||
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||||
void EventAction::EndOfEventAction(const G4Event* event)
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{
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// Get hist collections IDs
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||||
if ( fAbsoEdepHCID == -1 ) {
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fAbsoEdepHCID
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= G4SDManager::GetSDMpointer()->GetCollectionID("Absorber/Edep");
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fGapEdepHCID
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= G4SDManager::GetSDMpointer()->GetCollectionID("Gap/Edep");
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fAbsoTrackLengthHCID
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= G4SDManager::GetSDMpointer()->GetCollectionID("Absorber/TrackLength");
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||||
fGapTrackLengthHCID
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= G4SDManager::GetSDMpointer()->GetCollectionID("Gap/TrackLength");
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||||
// Get hist collections IDs
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||||
if (fAbsoEdepHCID == -1) {
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||||
fAbsoEdepHCID = G4SDManager::GetSDMpointer()->GetCollectionID("Absorber/Edep");
|
||||
fGapEdepHCID = G4SDManager::GetSDMpointer()->GetCollectionID("Gap/Edep");
|
||||
fAbsoTrackLengthHCID = G4SDManager::GetSDMpointer()->GetCollectionID("Absorber/TrackLength");
|
||||
fGapTrackLengthHCID = G4SDManager::GetSDMpointer()->GetCollectionID("Gap/TrackLength");
|
||||
}
|
||||
|
||||
// Get sum values from hits collections
|
||||
@@ -121,10 +104,8 @@ void EventAction::EndOfEventAction(const G4Event* event)
|
||||
auto absoEdep = GetSum(GetHitsCollection(fAbsoEdepHCID, event));
|
||||
auto gapEdep = GetSum(GetHitsCollection(fGapEdepHCID, event));
|
||||
|
||||
auto absoTrackLength
|
||||
= GetSum(GetHitsCollection(fAbsoTrackLengthHCID, event));
|
||||
auto gapTrackLength
|
||||
= GetSum(GetHitsCollection(fGapTrackLengthHCID, event));
|
||||
auto absoTrackLength = GetSum(GetHitsCollection(fAbsoTrackLengthHCID, event));
|
||||
auto gapTrackLength = GetSum(GetHitsCollection(fGapTrackLengthHCID, event));
|
||||
|
||||
// get analysis manager
|
||||
auto analysisManager = G4AnalysisManager::Instance();
|
||||
@@ -144,16 +125,16 @@ void EventAction::EndOfEventAction(const G4Event* event)
|
||||
analysisManager->FillNtupleDColumn(3, gapTrackLength);
|
||||
analysisManager->AddNtupleRow();
|
||||
|
||||
//print per event (modulo n)
|
||||
// print per event (modulo n)
|
||||
//
|
||||
auto eventID = event->GetEventID();
|
||||
auto printModulo = G4RunManager::GetRunManager()->GetPrintProgress();
|
||||
if ( ( printModulo > 0 ) && ( eventID % printModulo == 0 ) ) {
|
||||
if ((printModulo > 0) && (eventID % printModulo == 0)) {
|
||||
PrintEventStatistics(absoEdep, absoTrackLength, gapEdep, gapTrackLength);
|
||||
G4cout << "--> End of event: " << eventID << "\n" << G4endl;
|
||||
G4cout << "--> End of event: " << eventID << "\n" << G4endl;
|
||||
}
|
||||
}
|
||||
|
||||
//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
|
||||
|
||||
}
|
||||
} // namespace B4d
|
||||
|
||||
@@ -29,16 +29,13 @@
|
||||
|
||||
#include "PrimaryGeneratorAction.hh"
|
||||
|
||||
#include "G4RunManager.hh"
|
||||
#include "G4LogicalVolumeStore.hh"
|
||||
#include "G4LogicalVolume.hh"
|
||||
#include "G4Box.hh"
|
||||
#include "G4Event.hh"
|
||||
#include "G4LogicalVolume.hh"
|
||||
#include "G4LogicalVolumeStore.hh"
|
||||
#include "G4ParticleGun.hh"
|
||||
#include "G4ParticleTable.hh"
|
||||
#include "G4ParticleDefinition.hh"
|
||||
#include "G4SystemOfUnits.hh"
|
||||
#include "Randomize.hh"
|
||||
#include "globals.hh"
|
||||
|
||||
namespace B4
|
||||
{
|
||||
@@ -52,11 +49,10 @@ PrimaryGeneratorAction::PrimaryGeneratorAction()
|
||||
|
||||
// default particle kinematic
|
||||
//
|
||||
auto particleDefinition
|
||||
= G4ParticleTable::GetParticleTable()->FindParticle("e-");
|
||||
auto particleDefinition = G4ParticleTable::GetParticleTable()->FindParticle("e-");
|
||||
fParticleGun->SetParticleDefinition(particleDefinition);
|
||||
fParticleGun->SetParticleMomentumDirection(G4ThreeVector(0.,0.,1.));
|
||||
fParticleGun->SetParticleEnergy(300.*MeV);
|
||||
fParticleGun->SetParticleMomentumDirection(G4ThreeVector(0., 0., 1.));
|
||||
fParticleGun->SetParticleEnergy(300. * MeV);
|
||||
}
|
||||
|
||||
//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
|
||||
@@ -68,7 +64,7 @@ PrimaryGeneratorAction::~PrimaryGeneratorAction()
|
||||
|
||||
//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
|
||||
|
||||
void PrimaryGeneratorAction::GeneratePrimaries(G4Event* anEvent)
|
||||
void PrimaryGeneratorAction::GeneratePrimaries(G4Event* event)
|
||||
{
|
||||
// This function is called at the begining of event
|
||||
|
||||
@@ -81,29 +77,27 @@ void PrimaryGeneratorAction::GeneratePrimaries(G4Event* anEvent)
|
||||
|
||||
// Check that the world volume has box shape
|
||||
G4Box* worldBox = nullptr;
|
||||
if ( worldLV ) {
|
||||
if (worldLV) {
|
||||
worldBox = dynamic_cast<G4Box*>(worldLV->GetSolid());
|
||||
}
|
||||
|
||||
if ( worldBox ) {
|
||||
if (worldBox) {
|
||||
worldZHalfLength = worldBox->GetZHalfLength();
|
||||
}
|
||||
else {
|
||||
else {
|
||||
G4ExceptionDescription msg;
|
||||
msg << "World volume of box shape not found." << G4endl;
|
||||
msg << "Perhaps you have changed geometry." << G4endl;
|
||||
msg << "The gun will be place in the center.";
|
||||
G4Exception("PrimaryGeneratorAction::GeneratePrimaries()",
|
||||
"MyCode0002", JustWarning, msg);
|
||||
G4Exception("PrimaryGeneratorAction::GeneratePrimaries()", "MyCode0002", JustWarning, msg);
|
||||
}
|
||||
|
||||
// Set gun position
|
||||
fParticleGun
|
||||
->SetParticlePosition(G4ThreeVector(0., 0., -worldZHalfLength));
|
||||
fParticleGun->SetParticlePosition(G4ThreeVector(0., 0., -worldZHalfLength));
|
||||
|
||||
fParticleGun->GeneratePrimaryVertex(anEvent);
|
||||
fParticleGun->GeneratePrimaryVertex(event);
|
||||
}
|
||||
|
||||
//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
|
||||
|
||||
}
|
||||
} // namespace B4
|
||||
|
||||
@@ -30,10 +30,10 @@
|
||||
#include "RunAction.hh"
|
||||
|
||||
#include "G4AnalysisManager.hh"
|
||||
#include "G4Run.hh"
|
||||
#include "G4RunManager.hh"
|
||||
#include "G4UnitsTable.hh"
|
||||
#include "G4SystemOfUnits.hh"
|
||||
#include "G4UnitsTable.hh"
|
||||
#include "globals.hh"
|
||||
|
||||
namespace B4
|
||||
{
|
||||
@@ -51,20 +51,20 @@ RunAction::RunAction()
|
||||
auto analysisManager = G4AnalysisManager::Instance();
|
||||
|
||||
// Create directories
|
||||
//analysisManager->SetHistoDirectoryName("histograms");
|
||||
//analysisManager->SetNtupleDirectoryName("ntuple");
|
||||
// analysisManager->SetHistoDirectoryName("histograms");
|
||||
// analysisManager->SetNtupleDirectoryName("ntuple");
|
||||
analysisManager->SetVerboseLevel(1);
|
||||
analysisManager->SetNtupleMerging(true);
|
||||
// Note: merging ntuples is available only with Root output
|
||||
// Note: merging ntuples is available only with Root output
|
||||
|
||||
// Book histograms, ntuple
|
||||
//
|
||||
|
||||
// Creating histograms
|
||||
analysisManager->CreateH1("Eabs","Edep in absorber", 110, 0., 330*MeV);
|
||||
analysisManager->CreateH1("Egap","Edep in gap", 100, 0., 30*MeV);
|
||||
analysisManager->CreateH1("Labs","trackL in absorber", 100, 0., 50*cm);
|
||||
analysisManager->CreateH1("Lgap","trackL in gap", 100, 0., 50*cm);
|
||||
analysisManager->CreateH1("Eabs", "Edep in absorber", 110, 0., 330 * MeV);
|
||||
analysisManager->CreateH1("Egap", "Edep in gap", 100, 0., 30 * MeV);
|
||||
analysisManager->CreateH1("Labs", "trackL in absorber", 100, 0., 50 * cm);
|
||||
analysisManager->CreateH1("Lgap", "trackL in gap", 100, 0., 50 * cm);
|
||||
|
||||
// Creating ntuple
|
||||
//
|
||||
@@ -80,8 +80,8 @@ RunAction::RunAction()
|
||||
|
||||
void RunAction::BeginOfRunAction(const G4Run* /*run*/)
|
||||
{
|
||||
//inform the runManager to save random number seed
|
||||
//G4RunManager::GetRunManager()->SetRandomNumberStore(true);
|
||||
// inform the runManager to save random number seed
|
||||
// G4RunManager::GetRunManager()->SetRandomNumberStore(true);
|
||||
|
||||
// Get analysis manager
|
||||
auto analysisManager = G4AnalysisManager::Instance();
|
||||
@@ -104,34 +104,26 @@ void RunAction::EndOfRunAction(const G4Run* /*run*/)
|
||||
// print histogram statistics
|
||||
//
|
||||
auto analysisManager = G4AnalysisManager::Instance();
|
||||
if ( analysisManager->GetH1(1) ) {
|
||||
if (analysisManager->GetH1(1)) {
|
||||
G4cout << G4endl << " ----> print histograms statistic ";
|
||||
if(isMaster) {
|
||||
if (isMaster) {
|
||||
G4cout << "for the entire run " << G4endl << G4endl;
|
||||
}
|
||||
else {
|
||||
G4cout << "for the local thread " << G4endl << G4endl;
|
||||
}
|
||||
|
||||
G4cout << " EAbs : mean = "
|
||||
<< G4BestUnit(analysisManager->GetH1(0)->mean(), "Energy")
|
||||
<< " rms = "
|
||||
<< G4BestUnit(analysisManager->GetH1(0)->rms(), "Energy") << G4endl;
|
||||
G4cout << " EAbs : mean = " << G4BestUnit(analysisManager->GetH1(0)->mean(), "Energy")
|
||||
<< " rms = " << G4BestUnit(analysisManager->GetH1(0)->rms(), "Energy") << G4endl;
|
||||
|
||||
G4cout << " EGap : mean = "
|
||||
<< G4BestUnit(analysisManager->GetH1(1)->mean(), "Energy")
|
||||
<< " rms = "
|
||||
<< G4BestUnit(analysisManager->GetH1(1)->rms(), "Energy") << G4endl;
|
||||
G4cout << " EGap : mean = " << G4BestUnit(analysisManager->GetH1(1)->mean(), "Energy")
|
||||
<< " rms = " << G4BestUnit(analysisManager->GetH1(1)->rms(), "Energy") << G4endl;
|
||||
|
||||
G4cout << " LAbs : mean = "
|
||||
<< G4BestUnit(analysisManager->GetH1(2)->mean(), "Length")
|
||||
<< " rms = "
|
||||
<< G4BestUnit(analysisManager->GetH1(2)->rms(), "Length") << G4endl;
|
||||
G4cout << " LAbs : mean = " << G4BestUnit(analysisManager->GetH1(2)->mean(), "Length")
|
||||
<< " rms = " << G4BestUnit(analysisManager->GetH1(2)->rms(), "Length") << G4endl;
|
||||
|
||||
G4cout << " LGap : mean = "
|
||||
<< G4BestUnit(analysisManager->GetH1(3)->mean(), "Length")
|
||||
<< " rms = "
|
||||
<< G4BestUnit(analysisManager->GetH1(3)->rms(), "Length") << G4endl;
|
||||
G4cout << " LGap : mean = " << G4BestUnit(analysisManager->GetH1(3)->mean(), "Length")
|
||||
<< " rms = " << G4BestUnit(analysisManager->GetH1(3)->rms(), "Length") << G4endl;
|
||||
}
|
||||
|
||||
// save histograms & ntuple
|
||||
@@ -142,4 +134,4 @@ void RunAction::EndOfRunAction(const G4Run* /*run*/)
|
||||
|
||||
//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
|
||||
|
||||
}
|
||||
} // namespace B4
|
||||
|
||||
Reference in New Issue
Block a user