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QGSPCMS_FTFP_BERT.cc
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1 #include "QGSPCMS_FTFP_BERT.h"
4 
5 #include "G4EmStandardPhysics.hh"
6 #include "G4DecayPhysics.hh"
7 #include "G4EmExtraPhysics.hh"
8 #include "G4IonPhysics.hh"
9 #include "G4StoppingPhysics.hh"
10 #include "G4HadronElasticPhysics.hh"
11 #include "G4NeutronTrackingCut.hh"
12 #include "G4HadronicProcessStore.hh"
13 
14 #include "G4HadronPhysicsQGSP_FTFP_BERT.hh"
15 
17  int ver = p.getUntrackedParameter<int>("Verbosity", 0);
18  bool emPhys = p.getUntrackedParameter<bool>("EMPhysics", true);
19  bool hadPhys = p.getUntrackedParameter<bool>("HadPhysics", true);
20  bool tracking = p.getParameter<bool>("TrackingCut");
21  double timeLimit = p.getParameter<double>("MaxTrackTime") * CLHEP::ns;
22  double minFTFP = p.getParameter<double>("EminFTFP") * CLHEP::GeV;
23  double maxBERT = p.getParameter<double>("EmaxBERT") * CLHEP::GeV;
24  double minQGSP = p.getParameter<double>("EminQGSP") * CLHEP::GeV;
25  double maxFTFP = p.getParameter<double>("EmaxFTFP") * CLHEP::GeV;
26  double maxBERTpi = p.getParameter<double>("EmaxBERTpi") * CLHEP::GeV;
27  edm::LogInfo("PhysicsList") << "You are using the simulation engine: "
28  << "QGSP_FTFP_BERT \n Flags for EM Physics " << emPhys << ", for Hadronic Physics "
29  << hadPhys << " and tracking cut " << tracking << " t(ns)= " << timeLimit / CLHEP::ns
30  << "\n transition energy Bertini/FTFP from " << minFTFP / CLHEP::GeV << " to "
31  << maxBERTpi / CLHEP::GeV << ":" << maxBERT / CLHEP::GeV << " GeV"
32  << "\n transition energy FTFP/QGSP from " << minQGSP / CLHEP::GeV << " to "
33  << maxFTFP / CLHEP::GeV << " GeV";
34 
35  if (emPhys) {
36  // EM Physics
37  RegisterPhysics(new G4EmStandardPhysics(ver));
38 
39  // Synchroton Radiation & GN Physics
40  G4EmExtraPhysics* gn = new G4EmExtraPhysics(ver);
41  RegisterPhysics(gn);
42  }
43 
44  // Decays
45  this->RegisterPhysics(new G4DecayPhysics(ver));
46 
47  if (hadPhys) {
48  G4HadronicProcessStore::Instance()->SetVerbose(ver);
49 
50  // Hadron Elastic scattering
51  RegisterPhysics(new G4HadronElasticPhysics(ver));
52 
53  // Hadron Physics
54  RegisterPhysics(new HadronPhysicsQGSPCMS_FTFP_BERT(minFTFP, maxBERT, minQGSP, maxFTFP, maxBERTpi));
55 
56  // Stopping Physics
57  RegisterPhysics(new G4StoppingPhysics(ver));
58 
59  // Ion Physics
60  RegisterPhysics(new G4IonPhysics(ver));
61 
62  // Neutron tracking cut
63  if (tracking) {
64  G4NeutronTrackingCut* ncut = new G4NeutronTrackingCut(ver);
65  ncut->SetTimeLimit(timeLimit);
66  RegisterPhysics(ncut);
67  }
68  }
69 }
MessageLogger.h
AlCaHLTBitMon_ParallelJobs.p
p
Definition: AlCaHLTBitMon_ParallelJobs.py:153
QGSPCMS_FTFP_BERT.h
tracking
Definition: TempMeasurements.h:8
edm::LogInfo
Log< level::Info, false > LogInfo
Definition: MessageLogger.h:125
HadronPhysicsQGSPCMS_FTFP_BERT.h
PhysicsList
Definition: PhysicsList.h:7
edm::ParameterSet
Definition: ParameterSet.h:47
GeV
const double GeV
Definition: MathUtil.h:16
HadronPhysicsQGSPCMS_FTFP_BERT
Definition: HadronPhysicsQGSPCMS_FTFP_BERT.h:9
QGSPCMS_FTFP_BERT::QGSPCMS_FTFP_BERT
QGSPCMS_FTFP_BERT(const edm::ParameterSet &p)
Definition: QGSPCMS_FTFP_BERT.cc:16