| 1 | /* ======================================================================== *\
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| 2 | !
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| 3 | ! *
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| 4 | ! * This file is part of MARS, the MAGIC Analysis and Reconstruction
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| 5 | ! * Software. It is distributed to you in the hope that it can be a useful
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| 6 | ! * and timesaving tool in analysing Data of imaging Cerenkov telescopes.
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| 7 | ! * It is distributed WITHOUT ANY WARRANTY.
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| 8 | ! *
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| 9 | ! * Permission to use, copy, modify and distribute this software and its
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| 10 | ! * documentation for any purpose is hereby granted without fee,
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| 11 | ! * provided that the above copyright notice appear in all copies and
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| 12 | ! * that both that copyright notice and this permission notice appear
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| 13 | ! * in supporting documentation. It is provided "as is" without express
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| 14 | ! * or implied warranty.
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| 15 | ! *
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| 16 | !
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| 17 | !
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| 18 | ! Author(s): Thomas Bretz 12/2000 <mailto:tbretz@astro.uni-wuerzburg.de>
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| 19 | !
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| 20 | ! Copyright: MAGIC Software Development, 2000-2002
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| 21 | !
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| 22 | !
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| 23 | \* ======================================================================== */
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| 24 |
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| 25 | //////////////////////////////////////////////////////////////////////////////
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| 26 | // //
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| 27 | // //
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| 28 | //////////////////////////////////////////////////////////////////////////////
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| 29 | #include "MPairProduction.h"
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| 30 |
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| 31 | #include <TF1.h>
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| 32 | #include <TMath.h>
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| 33 | #include <TRandom.h>
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| 34 |
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| 35 | #include "TList.h"
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| 36 | #include "MElectron.h"
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| 37 |
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| 38 | ClassImp(MPairProduction);
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| 39 |
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| 40 | Double_t AngleDistrib(Double_t *x, Double_t *k)
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| 41 | {
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| 42 |
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| 43 | const Double_t c = x[0]; // cos(alpha)
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| 44 | const Double_t b = k[0]; // sqrt(1-1/s)
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| 45 |
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| 46 | const Double_t b2 = b*b;
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| 47 | const Double_t b4 = b2*b2;
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| 48 |
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| 49 | const Double_t c2 = c*c;
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| 50 | const Double_t c4 = c2*c2;
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| 51 |
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| 52 | const Double_t u = 1 - b4*c4 +2*b2*(1-b2)*(1-c2);
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| 53 | const Double_t d = 1-b2*c2;
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| 54 |
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| 55 | return u/(d*d);
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| 56 | }
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| 57 |
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| 58 | // --------------------------------------------------------------------------
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| 59 | MPairProduction::MPairProduction()
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| 60 | {
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| 61 | fAngle = new TF1("AngleDistrib", AngleDistrib, -1, 1, 1);
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| 62 | }
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| 63 |
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| 64 | MPairProduction::~MPairProduction()
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| 65 | {
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| 66 | delete fAngle;
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| 67 | }
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| 68 |
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| 69 | #include <iostream.h>
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| 70 |
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| 71 | // --------------------------------------------------------------------------
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| 72 | Bool_t MPairProduction::Process(MParticle *gamma, const Double_t Ep, const Double_t theta, TList *list)
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| 73 | {
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| 74 | //
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| 75 | // gamma: primary particle from source
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| 76 | // phot: infrared photon from background. (angle = interaction angle)
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| 77 | // Ep: Energy photon [GeV]
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| 78 | // theta: interaction angle [rad]
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| 79 | //
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| 80 | const Double_t E0 = 511e-6; // [GeV]
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| 81 | const Double_t Eg = gamma->GetEnergy(); // [GeV]
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| 82 |
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| 83 | const Double_t ctheta = cos(theta);
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| 84 |
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| 85 | const Double_t s = Ep*Eg*2*(1-ctheta); //[1]
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| 86 | const Double_t S = s/(E0*E0*4); //[1]
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| 87 | if (S<1)
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| 88 | return kFALSE;
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| 89 |
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| 90 | const Double_t stheta = sin(theta);
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| 91 |
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| 92 | const Double_t sqrbetah = s/((Eg+Ep)*(Eg+Ep)) + 1;
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| 93 | const Double_t sqrbetae = 1.-1./S;
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| 94 |
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| 95 | const Double_t GammaH = (Eg+Ep)/sqrt(s);
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| 96 |
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| 97 | const Double_t psi = stheta/(GammaH*(ctheta-sqrt(sqrbetah)));
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| 98 |
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| 99 | fAngle->SetParameter(0, sqrt(sqrbetae));
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| 100 |
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| 101 | const Double_t alpha = psi-acos(fAngle->GetRandom());
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| 102 |
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| 103 | const Double_t salpha = sin(alpha);
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| 104 | const Double_t calpha = cos(alpha);
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| 105 |
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| 106 | const Double_t tphi = stheta/(Eg/Ep+ctheta); // tan(phi)
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| 107 |
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| 108 | const Double_t bb = sqrt(sqrbetah/sqrbetae);
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| 109 |
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| 110 | const Double_t s1 = calpha/GammaH;
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| 111 | const Double_t s2 = tphi*s1 - salpha - bb;
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| 112 |
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| 113 | const Double_t tan1 = ((salpha+bb)*tphi+s1)/s2;
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| 114 | const Double_t tan2 = ((salpha-bb)*tphi+s1)/s2;
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| 115 |
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| 116 | const Double_t E = (Eg+Ep)/2;;
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| 117 | const Double_t f = sqrt(sqrbetah*sqrbetae)*salpha;
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| 118 |
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| 119 | // cout << " {" << f << "," << E << "," << atan(tan1) << "," << atan(-tan2) << "} " << flush;
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| 120 |
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| 121 | MElectron &p0 = *new MElectron(*gamma, E*(1.-f), kTRUE);
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| 122 | MElectron &p1 = *new MElectron(*gamma, E*(1.+f), kFALSE);
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| 123 |
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| 124 | Double_t rnd = gRandom->Uniform(TMath::Pi() * 2);
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| 125 | p0.SetNewDirection(atan(+tan1), rnd);
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| 126 | p1.SetNewDirection(atan(-tan2), rnd+TMath::Pi());
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| 127 |
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| 128 | list->Add(&p0);
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| 129 | list->Add(&p1);
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| 130 |
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| 131 | /*
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| 132 | const Double_t Epg = Ep/Eg; // 1+Epg ~ 1
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| 133 | const Double_t Egp = Eg/Ep; // 1+Egp ~ Egp
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| 134 |
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| 135 | const Double_t phi = atan(sin(theta)/(Egp+ctheta));
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| 136 |
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| 137 | const Double_t sphi = sin(phi);
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| 138 | const Double_t cphi = cos(phi);
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| 139 |
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| 140 | const Double_t alpha = theta-phi;
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| 141 | const Double_t calpha = cos(alpha);
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| 142 | const Double_t salpha = sin(alpha);
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| 143 |
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| 144 | const Double_t beta = (Eg*cphi+Ep*calpha)/(Ep+Eg);
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| 145 |
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| 146 | //
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| 147 | // gamma1 = 1/gamma = sqrt(1-beta*beta)
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| 148 | //
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| 149 | const Double_t gamma1 = sqrt((sphi*phi+Epg*salpha*Epg*salpha+2*Epg*(1-cphi*calpha)));
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| 150 |
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| 151 | const Double_t Beta = sqrt(1-1/s); //[1]
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| 152 |
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| 153 | fAngle->SetParameter(0, Beta);
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| 154 |
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| 155 | const Double_t psi = atan(gamma1*sphi/(cphi-beta));
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| 156 | const Double_t delta = acos(fAngle->GetRandom()) - psi;
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| 157 |
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| 158 | const Double_t Bcosd = Beta*cos(delta);
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| 159 | const Double_t Bsind = Beta*sin(delta);
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| 160 |
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| 161 | const Double_t E = sqrt(s)*E0/gamma1;
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| 162 | const Double_t dE = E*Bcosd;
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| 163 |
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| 164 | const Double_t E1 = E0/(E+dE);
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| 165 | const Double_t E2 = E0/(E-dE);
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| 166 |
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| 167 | const Double_t beta1 = sqrt(1.-E1*E1);
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| 168 | const Double_t beta2 = sqrt(1.-E2*E2);
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| 169 |
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| 170 | const Double_t Bscp = Bsind*cphi;
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| 171 | const Double_t spg = sphi/gamma1;
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| 172 | const Double_t cpg = cphi/gamma1;
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| 173 |
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| 174 | const Double_t tan1 = (spg*(Bcosd+1) + Bscp)/((cpg*(Bcosd+1) - Bscp));
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| 175 | const Double_t tan2 = (spg*(Bcosd-1) + Bscp)/((cpg*(Bcosd-1) - Bscp));
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| 176 |
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| 177 | MElectron &p0 = *new MElectron(E+dE, gamma->GetZ());
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| 178 | MElectron &p1 = *new MElectron(E-dE, gamma->GetZ());
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| 179 | p0 = *gamma; // Set Position and direction
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| 180 | p1 = *gamma; // Set Position and direction
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| 181 |
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| 182 | p0.SetBeta(beta1);
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| 183 | p1.SetBeta(beta2);
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| 184 |
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| 185 | static TRandom rand(0);
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| 186 | Double_t rnd = rand.Uniform(TMath::Pi() * 2);
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| 187 | p0.SetNewDirection(atan(tan1), rnd);
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| 188 | p1.SetNewDirection(atan(tan2), rnd+TMath::Pi());
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| 189 |
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| 190 | list->Add(&p0);
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| 191 | list->Add(&p1);
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| 192 | */
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| 193 | return kTRUE;
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| 194 | }
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| 195 |
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