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Geant4/particles/management/src/G4NeutronBetaDecayChannel.cc

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Differences between /particles/management/src/G4NeutronBetaDecayChannel.cc (Version 11.3.0) and /particles/management/src/G4NeutronBetaDecayChannel.cc (Version 6.2.p2)


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 25 //                                                 22 //
 26 // G4NeutronBetaDecayChannel class implementat << 
 27 //                                                 23 //
 28 // Author: H.Kurashige, 18 September 2001      <<  24 // $Id: G4NeutronBetaDecayChannel.cc,v 1.4 2002/04/03 09:05:33 kurasige Exp $
 29 // ------------------------------------------- <<  25 // GEANT4 tag $Name: geant4-05-02-patch-01 $
 30                                                <<  26 //
 31 #include "G4NeutronBetaDecayChannel.hh"        <<  27 // 
                                                   >>  28 // ------------------------------------------------------------
                                                   >>  29 //      GEANT 4 class header file
                                                   >>  30 //
                                                   >>  31 //      History: first implementation, based on object model of
                                                   >>  32 //      18 Sep  2001 H.Kurashige
                                                   >>  33 //
                                                   >>  34 // ------------------------------------------------------------
 32                                                    35 
 33 #include "G4DecayProducts.hh"                  << 
 34 #include "G4LorentzRotation.hh"                << 
 35 #include "G4LorentzVector.hh"                  << 
 36 #include "G4ParticleDefinition.hh"                 36 #include "G4ParticleDefinition.hh"
 37 #include "G4PhysicalConstants.hh"              <<  37 #include "G4DecayProducts.hh"
 38 #include "G4RotationMatrix.hh"                 << 
 39 #include "G4SystemOfUnits.hh"                  << 
 40 #include "G4VDecayChannel.hh"                      38 #include "G4VDecayChannel.hh"
                                                   >>  39 #include "G4NeutronBetaDecayChannel.hh"
 41 #include "Randomize.hh"                            40 #include "Randomize.hh"
                                                   >>  41 #include "G4RotationMatrix.hh"
                                                   >>  42 #include "G4LorentzVector.hh"
                                                   >>  43 #include "G4LorentzRotation.hh"
                                                   >>  44 
 42                                                    45 
 43 G4NeutronBetaDecayChannel::G4NeutronBetaDecayC <<  46 G4NeutronBetaDecayChannel::G4NeutronBetaDecayChannel(
 44   : G4VDecayChannel("Neutron Decay")           <<  47                const G4String& theParentName, 
                                                   >>  48                G4double        theBR)
                                                   >>  49                    :G4VDecayChannel("Neutron Decay"),
                                                   >>  50         aENuCorr(-0.102)
 45 {                                                  51 {
 46   // set names for daughter particles              52   // set names for daughter particles
 47   if (theParentName == "neutron") {                53   if (theParentName == "neutron") {
 48     SetBR(theBR);                                  54     SetBR(theBR);
 49     SetParent("neutron");                          55     SetParent("neutron");
 50     SetNumberOfDaughters(3);                       56     SetNumberOfDaughters(3);
 51     SetDaughter(0, "e-");                          57     SetDaughter(0, "e-");
 52     SetDaughter(1, "anti_nu_e");                   58     SetDaughter(1, "anti_nu_e");
 53     SetDaughter(2, "proton");                      59     SetDaughter(2, "proton");
 54   }                                            <<  60   } else {
 55   else if (theParentName == "anti_neutron") {  << 
 56     SetBR(theBR);                              << 
 57     SetParent("anti_neutron");                 << 
 58     SetNumberOfDaughters(3);                   << 
 59     SetDaughter(0, "e+");                      << 
 60     SetDaughter(1, "nu_e");                    << 
 61     SetDaughter(2, "anti_proton");             << 
 62   }                                            << 
 63   else {                                       << 
 64 #ifdef G4VERBOSE                                   61 #ifdef G4VERBOSE
 65     if (GetVerboseLevel() > 0) {               <<  62     if (GetVerboseLevel()>0) {
 66       G4cout << "G4NeutronBetaDecayChannel:: c     63       G4cout << "G4NeutronBetaDecayChannel:: constructor :";
 67       G4cout << " parent particle is not neutr <<  64       G4cout << " parent particle is not muon but ";
 68       G4cout << theParentName << G4endl;           65       G4cout << theParentName << G4endl;
 69     }                                              66     }
 70 #endif                                             67 #endif
 71   }                                                68   }
 72 }                                                  69 }
 73                                                    70 
 74 G4NeutronBetaDecayChannel::G4NeutronBetaDecayC <<  71 G4NeutronBetaDecayChannel::~G4NeutronBetaDecayChannel()
 75   : G4VDecayChannel(right)                     << 
 76 {}                                             << 
 77                                                << 
 78 G4NeutronBetaDecayChannel&                     << 
 79 G4NeutronBetaDecayChannel::operator=(const G4N << 
 80 {                                                  72 {
 81   if (this != &right) {                        << 
 82     kinematics_name = right.kinematics_name;   << 
 83     verboseLevel = right.verboseLevel;         << 
 84     rbranch = right.rbranch;                   << 
 85                                                << 
 86     // copy parent name                        << 
 87     delete parent_name;                        << 
 88     parent_name = new G4String(*right.parent_n << 
 89                                                << 
 90     // clear daughters_name array              << 
 91     ClearDaughtersName();                      << 
 92                                                << 
 93     // recreate array                          << 
 94     numberOfDaughters = right.numberOfDaughter << 
 95     if (numberOfDaughters > 0) {               << 
 96       daughters_name = new G4String*[numberOfD << 
 97       // copy daughters name                   << 
 98       for (G4int index = 0; index < numberOfDa << 
 99         daughters_name[index] = new G4String(* << 
100       }                                        << 
101     }                                          << 
102   }                                            << 
103   return *this;                                << 
104 }                                                  73 }
105                                                    74 
106 G4DecayProducts* G4NeutronBetaDecayChannel::De <<  75 G4DecayProducts *G4NeutronBetaDecayChannel::DecayIt(G4double) 
107 {                                                  76 {
108   //  This class describes free neutron beta d <<  77   //  This class describes free neutron beta decay  kinemtics.
109   //  This version neglects neutron/electron p <<  78   //  This version neglects neutron/electron polarization  
110   //  without Coulomb effect                       79   //  without Coulomb effect
111                                                    80 
112 #ifdef G4VERBOSE                                   81 #ifdef G4VERBOSE
113   if (GetVerboseLevel() > 1) G4cout << "G4Neut <<  82   if (GetVerboseLevel()>1) G4cout << "G4NeutronBetaDecayChannel::DecayIt ";
114 #endif                                             83 #endif
115                                                    84 
116   CheckAndFillParent();                        <<  85   if (parent == 0) FillParent();  
117   CheckAndFillDaughters();                     <<  86   if (daughters == 0) FillDaughters();
118                                                <<  87  
119   // parent mass                                   88   // parent mass
120   G4double parentmass = G4MT_parent->GetPDGMas <<  89   G4double parentmass = parent->GetPDGMass();
121                                                    90 
122   // daughters'mass                            <<  91   //daughters'mass
123   G4double daughtermass[3];                    <<  92   G4double daughtermass[3]; 
124   G4double sumofdaughtermass = 0.0;                93   G4double sumofdaughtermass = 0.0;
125   for (G4int index = 0; index < 3; ++index) {  <<  94   for (G4int index=0; index<3; index++){
126     daughtermass[index] = G4MT_daughters[index <<  95     daughtermass[index] = daughters[index]->GetPDGMass();
127     sumofdaughtermass += daughtermass[index];      96     sumofdaughtermass += daughtermass[index];
128   }                                                97   }
129   G4double xmax = parentmass - sumofdaughterma <<  98   G4double xmax = parentmass-sumofdaughtermass;  
130                                                    99 
131   // create parent G4DynamicParticle at rest   << 100    //create parent G4DynamicParticle at rest
132   G4ThreeVector dummy;                            101   G4ThreeVector dummy;
133   auto parentparticle = new G4DynamicParticle( << 102   G4DynamicParticle * parentparticle = new G4DynamicParticle( parent, dummy, 0.0);
134                                                   103 
135   // create G4Decayproducts                    << 104   //create G4Decayproducts
136   auto products = new G4DecayProducts(*parentp << 105   G4DecayProducts *products = new G4DecayProducts(*parentparticle);
137   delete parentparticle;                          106   delete parentparticle;
138                                                   107 
139   // calculate daughter momentum                  108   // calculate daughter momentum
140   G4double daughtermomentum[3];                   109   G4double daughtermomentum[3];
141                                                   110 
142   // calcurate electron energy                    111   // calcurate electron energy
143   G4double x;  // Ee                           << 112   G4double x;                    // Ee
144   G4double p;  // Pe                           << 113   G4double p;                    // Pe
145   G4double dm = daughtermass[0];  // Me        << 114   G4double m = daughtermass[0];  //Me
146   G4double w;  // cosine of e-nu angle         << 115   G4double w;                    // cosine of e-nu angle
147   G4double r;                                  << 116   G4double r;  
148   G4double r0;                                    117   G4double r0;
149   const std::size_t MAX_LOOP = 10000;          << 118   do {
150   for (std::size_t loop_counter = 0; loop_coun << 119       x = xmax*G4UniformRand();
151     x = xmax * G4UniformRand();                << 120       p = sqrt(x*(x+2.0*m));
152     p = std::sqrt(x * (x + 2.0 * dm));         << 121       w = 1.0-2.0*G4UniformRand();
153     w = 1.0 - 2.0 * G4UniformRand();           << 122       r = p*(x+m)*(xmax-x)*(xmax-x)*(1.0+aENuCorr*p/(x+m)*w);
154     r = p * (x + dm) * (xmax - x) * (xmax - x) << 123       r0 = G4UniformRand()*(xmax+m)*(xmax+m)*xmax*xmax*(1.0+aENuCorr);
155     r0 = G4UniformRand() * (xmax + dm) * (xmax << 124   } while (r < r0);    
156     if (r > r0) break;                         << 
157   }                                            << 
158                                                   125 
159   // create daughter G4DynamicParticle         << 126   //create daughter G4DynamicParticle 
160   // rotation materix to lab frame                127   // rotation materix to lab frame
161   //                                           << 128   G4double costheta = 2.*G4UniformRand()-1.0;
162   G4double costheta = 2. * G4UniformRand() - 1 << 129   G4double theta = acos(costheta)*rad;
163   G4double theta = std::acos(costheta) * rad;  << 130   G4double phi  = 2.0*M_PI*G4UniformRand()*rad;
164   G4double phi = twopi * G4UniformRand() * rad << 
165   G4RotationMatrix rm;                            131   G4RotationMatrix rm;
166   rm.rotateY(theta);                              132   rm.rotateY(theta);
167   rm.rotateZ(phi);                                133   rm.rotateZ(phi);
168                                                   134 
169   // daughter 0 (electron) in Z direction         135   // daughter 0 (electron) in Z direction
170   daughtermomentum[0] = p;                        136   daughtermomentum[0] = p;
171   G4ThreeVector direction0(0.0, 0.0, 1.0);        137   G4ThreeVector direction0(0.0, 0.0, 1.0);
172   direction0 = rm * direction0;                   138   direction0 = rm * direction0;
173   auto daughterparticle0 =                     << 139   G4DynamicParticle * daughterparticle0 
174     new G4DynamicParticle(G4MT_daughters[0], d << 140          = new G4DynamicParticle( daughters[0], direction0*daughtermomentum[0]);
175   products->PushProducts(daughterparticle0);      141   products->PushProducts(daughterparticle0);
176                                                   142 
177   // daughter 1 (nutrino) in XZ plane             143   // daughter 1 (nutrino) in XZ plane
178   G4double eNu;  // Enu                        << 144   G4double eNu = xmax-x; 
179   eNu = (parentmass - daughtermass[2]) * (pare << 
180         - 2. * parentmass * (x + dm);          << 
181   eNu /= 2. * (parentmass + p * w - (x + dm)); << 
182   G4double cosn = w;                              145   G4double cosn = w;
183   G4double phin = twopi * G4UniformRand() * ra << 146   G4double sinn = sqrt((1.0-cosn)*(1.0+cosn));
184   G4double sinn = std::sqrt((1.0 - cosn) * (1. << 
185                                                   147 
186   G4ThreeVector direction1(sinn * std::cos(phi << 148   G4ThreeVector direction1(sinn, 0.0, cosn);
187   direction1 = rm * direction1;                   149   direction1 = rm * direction1;
188   auto daughterparticle1 = new G4DynamicPartic << 150   G4DynamicParticle * daughterparticle1 
                                                   >> 151          = new G4DynamicParticle( daughters[1], direction1*eNu);
189   products->PushProducts(daughterparticle1);      152   products->PushProducts(daughterparticle1);
190                                                   153 
191   // daughter 2 (proton) at REST                  154   // daughter 2 (proton) at REST
192   G4double eP;  // Eproton                     << 155   G4ThreeVector direction2(0.0, 0.0, 0.0);
193   eP = parentmass - eNu - (x + dm) - daughterm << 156   G4DynamicParticle * daughterparticle2 
194   G4double pPx = -eNu * sinn;                  << 157          = new G4DynamicParticle( daughters[2], direction2);
195   G4double pPz = -p - eNu * cosn;              << 
196   G4double pP = std::sqrt(eP * (eP + 2. * daug << 
197   G4ThreeVector direction2(pPx / pP * std::cos << 
198   direction2 = rm * direction2;                << 
199   auto daughterparticle2 = new G4DynamicPartic << 
200   products->PushProducts(daughterparticle2);      158   products->PushProducts(daughterparticle2);
                                                   >> 159  
201                                                   160 
202   // output message                            << 161  // output message
203 #ifdef G4VERBOSE                                  162 #ifdef G4VERBOSE
204   if (GetVerboseLevel() > 1) {                 << 163   if (GetVerboseLevel()>1) {
205     G4cout << "G4NeutronBetaDecayChannel::Deca    164     G4cout << "G4NeutronBetaDecayChannel::DecayIt ";
206     G4cout << "  create decay products in rest << 165     G4cout << "  create decay products in rest frame " <<G4endl;
207     products->DumpInfo();                         166     products->DumpInfo();
208   }                                               167   }
209 #endif                                            168 #endif
210   return products;                                169   return products;
211 }                                                 170 }
                                                   >> 171 
                                                   >> 172 
                                                   >> 173 
                                                   >> 174 
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                                                   >> 176 
212                                                   177