Geant4  10.02.p03
G4EmDNAPhysics_option1.cc
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26 // $Id: G4EmDNAPhysics_option1.cc 73244 2013-08-22 13:12:17Z gcosmo $
27 
28 #include "G4EmDNAPhysics_option1.hh"
29 
30 #include "G4SystemOfUnits.hh"
31 
33 
34 // *** Processes and models for Geant4-DNA
35 
36 #include "G4DNAElastic.hh"
39 
40 #include "G4DNAExcitation.hh"
41 #include "G4DNAAttachment.hh"
42 #include "G4DNAVibExcitation.hh"
43 #include "G4DNAIonisation.hh"
44 #include "G4DNAChargeDecrease.hh"
45 #include "G4DNAChargeIncrease.hh"
46 
47 #include "G4hMultipleScattering.hh"
48 #include "G4LowEWentzelVIModel.hh"
49 
50 // particles
51 
52 #include "G4Electron.hh"
53 #include "G4Proton.hh"
54 #include "G4GenericIon.hh"
55 
56 // Warning : the following is needed in order to use EM Physics builders
57 // e+
58 #include "G4Positron.hh"
59 #include "G4eMultipleScattering.hh"
60 #include "G4eIonisation.hh"
61 #include "G4eBremsstrahlung.hh"
62 #include "G4eplusAnnihilation.hh"
63 // gamma
64 #include "G4Gamma.hh"
65 #include "G4PhotoElectricEffect.hh"
66 #include "G4LivermorePhotoElectricModel.hh"
67 #include "G4ComptonScattering.hh"
69 #include "G4GammaConversion.hh"
71 #include "G4RayleighScattering.hh"
73 
74 #include "G4EmParameters.hh"
75 // end of warning
76 
77 #include "G4LossTableManager.hh"
78 #include "G4UAtomicDeexcitation.hh"
79 #include "G4PhysicsListHelper.hh"
80 #include "G4BuilderType.hh"
81 
82 // factory
84 //
85 G4_DECLARE_PHYSCONSTR_FACTORY(G4EmDNAPhysics_option1);
86 
87 
88 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
89 
90 G4EmDNAPhysics_option1::G4EmDNAPhysics_option1(G4int ver)
91  : G4VPhysicsConstructor("G4EmDNAPhysics_option1"), verbose(ver)
92 {
95 }
96 
97 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
98 
99 G4EmDNAPhysics_option1::G4EmDNAPhysics_option1(G4int ver, const G4String&)
100  : G4VPhysicsConstructor("G4EmDNAPhysics_option1"), verbose(ver)
101 {
104 }
105 
106 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
107 
108 G4EmDNAPhysics_option1::~G4EmDNAPhysics_option1()
109 {}
110 
111 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
112 
113 void G4EmDNAPhysics_option1::ConstructParticle()
114 {
115 // bosons
116  G4Gamma::Gamma();
117 
118 // leptons
121 
122 // baryons
124 
126 
127  G4DNAGenericIonsManager * genericIonsManager;
128  genericIonsManager=G4DNAGenericIonsManager::Instance();
129  genericIonsManager->GetIon("alpha++");
130  genericIonsManager->GetIon("alpha+");
131  genericIonsManager->GetIon("helium");
132  genericIonsManager->GetIon("hydrogen");
133  //genericIonsManager->GetIon("carbon");
134  //genericIonsManager->GetIon("nitrogen");
135  //genericIonsManager->GetIon("oxygen");
136  //genericIonsManager->GetIon("iron");
137 
138 }
139 
140 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
141 
142 void G4EmDNAPhysics_option1::ConstructProcess()
143 {
144  if(verbose > 1) {
145  G4cout << "### " << GetPhysicsName() << " Construct Processes " << G4endl;
146  }
148 
149  auto myParticleIterator=GetParticleIterator();
150  myParticleIterator->reset();
151  while( (*myParticleIterator)() )
152  {
153  G4ParticleDefinition* particle = myParticleIterator->value();
154  G4String particleName = particle->GetParticleName();
155 
156  if (particleName == "e-") {
157 
158  // *** Elastic scattering (two alternative models available) ***
159 
160  //G4DNAElastic* theDNAElasticProcess = new G4DNAElastic("e-_G4DNAElastic");
161  //theDNAElasticProcess->SetEmModel(new G4DNAChampionElasticModel());
162 
163  // or alternative model
164  //theDNAElasticProcess->SetEmModel(new G4DNAScreenedRutherfordElasticModel());
165 
166  //ph->RegisterProcess(theDNAElasticProcess, particle);
167 
169  msc->SetEmModel(new G4LowEWentzelVIModel(), 1);
170  ph->RegisterProcess(msc, particle);
171 
172 
173  // *** Excitation ***
174  ph->RegisterProcess(new G4DNAExcitation("e-_G4DNAExcitation"), particle);
175 
176  // *** Ionisation ***
177  ph->RegisterProcess(new G4DNAIonisation("e-_G4DNAIonisation"), particle);
178 
179  // *** Vibrational excitation ***
180  ph->RegisterProcess(new G4DNAVibExcitation("e-_G4DNAVibExcitation"), particle);
181 
182  // *** Attachment ***
183  ph->RegisterProcess(new G4DNAAttachment("e-_G4DNAAttachment"), particle);
184 
185  } else if ( particleName == "proton" ) {
186 
188  msc->SetEmModel(new G4LowEWentzelVIModel(), 1);
189  ph->RegisterProcess(msc, particle);
190 
191  ph->RegisterProcess(new G4DNAExcitation("proton_G4DNAExcitation"), particle);
192  ph->RegisterProcess(new G4DNAIonisation("proton_G4DNAIonisation"), particle);
193  ph->RegisterProcess(new G4DNAChargeDecrease("proton_G4DNAChargeDecrease"), particle);
194 
195  } else if ( particleName == "hydrogen" ) {
196  ph->RegisterProcess(new G4DNAExcitation("hydrogen_G4DNAExcitation"), particle);
197  ph->RegisterProcess(new G4DNAIonisation("hydrogen_G4DNAIonisation"), particle);
198  ph->RegisterProcess(new G4DNAChargeIncrease("hydrogen_G4DNAChargeIncrease"), particle);
199 
200  } else if ( particleName == "alpha" ) {
201 
203  msc->SetEmModel(new G4LowEWentzelVIModel(), 1);
204  ph->RegisterProcess(msc, particle);
205 
206  ph->RegisterProcess(new G4DNAExcitation("alpha_G4DNAExcitation"), particle);
207  ph->RegisterProcess(new G4DNAIonisation("alpha_G4DNAIonisation"), particle);
208  ph->RegisterProcess(new G4DNAChargeDecrease("alpha_G4DNAChargeDecrease"), particle);
209 
210  } else if ( particleName == "alpha+" ) {
211 
213  msc->SetEmModel(new G4LowEWentzelVIModel(), 1);
214  ph->RegisterProcess(msc, particle);
215 
216  ph->RegisterProcess(new G4DNAExcitation("alpha+_G4DNAExcitation"), particle);
217  ph->RegisterProcess(new G4DNAIonisation("alpha+_G4DNAIonisation"), particle);
218  ph->RegisterProcess(new G4DNAChargeDecrease("alpha+_G4DNAChargeDecrease"), particle);
219  ph->RegisterProcess(new G4DNAChargeIncrease("alpha+_G4DNAChargeIncrease"), particle);
220 
221  } else if ( particleName == "helium" ) {
222  ph->RegisterProcess(new G4DNAExcitation("helium_G4DNAExcitation"), particle);
223  ph->RegisterProcess(new G4DNAIonisation("helium_G4DNAIonisation"), particle);
224  ph->RegisterProcess(new G4DNAChargeIncrease("helium_G4DNAChargeIncrease"), particle);
225 
226  // Extension to HZE proposed by Z. Francis
227 
228  // S. Incerti
229 
230  } else if ( particleName == "GenericIon" ) {
231 
233  msc->SetEmModel(new G4LowEWentzelVIModel(), 1);
234  ph->RegisterProcess(msc, particle);
235 
236  ph->RegisterProcess(new G4DNAIonisation("GenericIon_G4DNAIonisation"), particle);
237 
238  /*
239  } else if ( particleName == "carbon" ) {
240 
241  G4hMultipleScattering* msc = new G4hMultipleScattering();
242  msc->SetEmModel(new G4LowEWentzelVIModel(), 1);
243  ph->RegisterProcess(msc, particle);
244 
245  ph->RegisterProcess(new G4DNAIonisation("carbon_G4DNAIonisation"), particle);
246 
247  } else if ( particleName == "nitrogen" ) {
248 
249  G4hMultipleScattering* msc = new G4hMultipleScattering();
250  msc->SetEmModel(new G4LowEWentzelVIModel(), 1);
251  ph->RegisterProcess(msc, particle);
252 
253  ph->RegisterProcess(new G4DNAIonisation("nitrogen_G4DNAIonisation"), particle);
254 
255  } else if ( particleName == "oxygen" ) {
256 
257  G4hMultipleScattering* msc = new G4hMultipleScattering();
258  msc->SetEmModel(new G4LowEWentzelVIModel(), 1);
259  ph->RegisterProcess(msc, particle);
260 
261  ph->RegisterProcess(new G4DNAIonisation("oxygen_G4DNAIonisation"), particle);
262 
263  } else if ( particleName == "iron" ) {
264 
265  G4hMultipleScattering* msc = new G4hMultipleScattering();
266  msc->SetEmModel(new G4LowEWentzelVIModel(), 1);
267  ph->RegisterProcess(msc, particle);
268 
269  ph->RegisterProcess(new G4DNAIonisation("iron_G4DNAIonisation"), particle);
270  */
271  }
272 
273  // Warning : the following particles and processes are needed by EM Physics builders
274  // They are taken from the default Livermore Physics list
275  // These particles are currently not handled by Geant4-DNA
276 
277  // e+
278 
279  else if (particleName == "e+") {
280 
281  // Identical to G4EmStandardPhysics_option3
282 
285  G4eIonisation* eIoni = new G4eIonisation();
286  eIoni->SetStepFunction(0.2, 100*um);
287 
288  ph->RegisterProcess(msc, particle);
289  ph->RegisterProcess(eIoni, particle);
290  ph->RegisterProcess(new G4eBremsstrahlung(), particle);
291  ph->RegisterProcess(new G4eplusAnnihilation(), particle);
292 
293  } else if (particleName == "gamma") {
294 
295  G4double LivermoreHighEnergyLimit = GeV;
296 
297  G4PhotoElectricEffect* thePhotoElectricEffect = new G4PhotoElectricEffect();
298  G4LivermorePhotoElectricModel* theLivermorePhotoElectricModel =
299  new G4LivermorePhotoElectricModel();
300  theLivermorePhotoElectricModel->SetHighEnergyLimit(LivermoreHighEnergyLimit);
301  thePhotoElectricEffect->AddEmModel(0, theLivermorePhotoElectricModel);
302  ph->RegisterProcess(thePhotoElectricEffect, particle);
303 
304  G4ComptonScattering* theComptonScattering = new G4ComptonScattering();
305  G4LivermoreComptonModel* theLivermoreComptonModel =
307  theLivermoreComptonModel->SetHighEnergyLimit(LivermoreHighEnergyLimit);
308  theComptonScattering->AddEmModel(0, theLivermoreComptonModel);
309  ph->RegisterProcess(theComptonScattering, particle);
310 
311  G4GammaConversion* theGammaConversion = new G4GammaConversion();
312  G4LivermoreGammaConversionModel* theLivermoreGammaConversionModel =
314  theLivermoreGammaConversionModel->SetHighEnergyLimit(LivermoreHighEnergyLimit);
315  theGammaConversion->AddEmModel(0, theLivermoreGammaConversionModel);
316  ph->RegisterProcess(theGammaConversion, particle);
317 
318  G4RayleighScattering* theRayleigh = new G4RayleighScattering();
319  G4LivermoreRayleighModel* theRayleighModel = new G4LivermoreRayleighModel();
320  theRayleighModel->SetHighEnergyLimit(LivermoreHighEnergyLimit);
321  theRayleigh->AddEmModel(0, theRayleighModel);
322  ph->RegisterProcess(theRayleigh, particle);
323  }
324 
325  // Warning : end of particles and processes are needed by EM Physics builders
326 
327  }
328 
329  // Deexcitation
330  //
333  de->SetFluo(true);
334 }
335 
336 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
static G4GenericIon * GenericIonDefinition()
Definition: G4GenericIon.cc:88
static G4LossTableManager * Instance()
void SetStepFunction(G4double v1, G4double v2)
void SetEmModel(G4VMscModel *, G4int index=1)
int G4int
Definition: G4Types.hh:78
void SetHighEnergyLimit(G4double)
Definition: G4VEmModel.hh:725
const G4String & GetParticleName() const
const G4String & GetPhysicsName() const
G4GLOB_DLL std::ostream G4cout
G4bool RegisterProcess(G4VProcess *process, G4ParticleDefinition *particle)
static G4Proton * Proton()
Definition: G4Proton.cc:93
static const double GeV
Definition: G4SIunits.hh:214
static G4DNAGenericIonsManager * Instance(void)
static G4Gamma * Gamma()
Definition: G4Gamma.cc:86
static G4Positron * Positron()
Definition: G4Positron.cc:94
void AddEmModel(G4int, G4VEmModel *, const G4Region *region=0)
static G4PhysicsListHelper * GetPhysicsListHelper()
static G4EmParameters * Instance()
static const double um
Definition: G4SIunits.hh:112
static G4Electron * Electron()
Definition: G4Electron.cc:94
#define G4endl
Definition: G4ios.hh:61
G4ParticleTable::G4PTblDicIterator * GetParticleIterator() const
double G4double
Definition: G4Types.hh:76
void SetAtomDeexcitation(G4VAtomDeexcitation *)
void SetStepLimitType(G4MscStepLimitType val)
G4ParticleDefinition * GetIon(const G4String &name)
G4_DECLARE_PHYSCONSTR_FACTORY(G4EmDNAPhysics_option1)