00001
00002 #include "Rivet/Analysis.hh"
00003 #include "Rivet/RivetAIDA.hh"
00004 #include "Rivet/Tools/ParticleIdUtils.hh"
00005 #include "Rivet/Tools/Logging.hh"
00006 #include "Rivet/Projections/ChargedFinalState.hh"
00007 #include "Rivet/Projections/ChargedLeptons.hh"
00008
00009 namespace Rivet {
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00028 class CDF_2008_NOTE_9351 : public Analysis {
00029 public:
00030
00031
00032 CDF_2008_NOTE_9351() : Analysis("CDF_2008_NOTE_9351")
00033 {
00034 }
00035
00036
00037
00038
00039
00040 void init() {
00041
00042 const ChargedFinalState cfs(-1.0, 1.0, 0.5*GeV);
00043 const ChargedFinalState clfs(-1.0, 1.0, 20*GeV);
00044 addProjection(cfs, "FS");
00045 addProjection(ChargedLeptons(clfs), "CL");
00046
00047
00048 _hist_tnchg = bookProfile1D( 1, 1, 1);
00049 _hist_pnchg = bookProfile1D( 2, 1, 1);
00050 _hist_pmaxnchg = bookProfile1D( 3, 1, 1);
00051 _hist_pminnchg = bookProfile1D( 4, 1, 1);
00052 _hist_pdifnchg = bookProfile1D( 5, 1, 1);
00053 _hist_anchg = bookProfile1D( 6, 1, 1);
00054
00055 _hist_tcptsum = bookProfile1D( 7, 1, 1);
00056 _hist_pcptsum = bookProfile1D( 8, 1, 1);
00057 _hist_pmaxcptsum = bookProfile1D( 9, 1, 1);
00058 _hist_pmincptsum = bookProfile1D(10, 1, 1);
00059 _hist_pdifcptsum = bookProfile1D(11, 1, 1);
00060 _hist_acptsum = bookProfile1D(12, 1, 1);
00061
00062 _hist_tcptave = bookProfile1D(13, 1, 1);
00063 _hist_pcptave = bookProfile1D(14, 1, 1);
00064 _hist_acptave = bookProfile1D(15, 1, 1);
00065
00066 _hist_tcptmax = bookProfile1D(16, 1, 1);
00067 _hist_pcptmax = bookProfile1D(17, 1, 1);
00068 _hist_acptmax = bookProfile1D(18, 1, 1);
00069
00070 _hist_zptvsnchg = bookProfile1D(19, 1, 1);
00071 _hist_cptavevsnchg = bookProfile1D(20, 1, 1);
00072 _hist_cptavevsnchgsmallzpt = bookProfile1D(21, 1, 1);
00073 }
00074
00075
00076
00077 void analyze(const Event& e) {
00078
00079 const FinalState& fs = applyProjection<FinalState>(e, "FS");
00080 const size_t numParticles = fs.particles().size();
00081
00082
00083 if (numParticles < 1) {
00084 MSG_DEBUG("Failed multiplicity cut");
00085 vetoEvent;
00086 }
00087
00088
00089 const double weight = e.weight();
00090
00091
00092 const ParticleVector& leptons = applyProjection<ChargedLeptons>(e, "CL").chargedLeptons();
00093
00094
00095 MSG_DEBUG("lepton multiplicity = " << leptons.size());
00096 if (leptons.size() != 2 || leptons[0].pdgId() != -leptons[1].pdgId() ) vetoEvent;
00097
00098
00099 if (leptons[0].momentum().pT()/GeV <= 20 || leptons[1].momentum().pT()/GeV <= 20) vetoEvent;
00100
00101
00102 const FourMomentum dilepton = leptons[0].momentum() + leptons[1].momentum();
00103 if (!inRange(dilepton.mass()/GeV, 70., 110.) || fabs(dilepton.eta()) >= 6) vetoEvent;
00104 MSG_DEBUG("Dilepton mass = " << mass(dilepton)/GeV << " GeV");
00105 MSG_DEBUG("Dilepton pT = " << pT(dilepton)/GeV << " GeV");
00106
00107
00108 size_t numToward(0), numAway(0);
00109 long int numTrans1(0), numTrans2(0);
00110 double ptSumToward(0.0), ptSumTrans1(0.0), ptSumTrans2(0.0), ptSumAway(0.0);
00111 double ptMaxToward(0.0), ptMaxTrans1(0.0), ptMaxTrans2(0.0), ptMaxAway(0.0);
00112 const double phiZ = azimuthalAngle(dilepton);
00113 const double pTZ = pT(dilepton);
00114
00115 for (ParticleVector::const_iterator p = fs.particles().begin(); p != fs.particles().end(); ++p) {
00116
00117
00118 if (abs(p->pdgId()) < 20) continue;
00119
00120 const double dPhi = deltaPhi(p->momentum().phi(), phiZ);
00121 const double pT = p->momentum().pT();
00122 double rotatedphi = p->momentum().phi() - phiZ;
00123 while (rotatedphi < 0) rotatedphi += 2*PI;
00124
00125 if (dPhi < PI/3.0) {
00126 ptSumToward += pT;
00127 ++numToward;
00128 if (pT > ptMaxToward)
00129 ptMaxToward = pT;
00130 } else if (dPhi < 2*PI/3.0) {
00131 if (rotatedphi <= PI) {
00132 ptSumTrans1 += pT;
00133 ++numTrans1;
00134 if (pT > ptMaxTrans1)
00135 ptMaxTrans1 = pT;
00136 }
00137 else {
00138 ptSumTrans2 += pT;
00139 ++numTrans2;
00140 if (pT > ptMaxTrans2)
00141 ptMaxTrans2 = pT;
00142 }
00143 } else {
00144 ptSumAway += pT;
00145 ++numAway;
00146 if (pT > ptMaxAway)
00147 ptMaxAway = pT;
00148 }
00149
00150 _hist_cptavevsnchg->fill(numParticles-2, pT, weight);
00151 if (pTZ < 10)
00152 _hist_cptavevsnchgsmallzpt->fill(numParticles-2, pT, weight);
00153 }
00154
00155
00156 _hist_tnchg->fill(pTZ, numToward/(4*PI/3), weight);
00157 _hist_pnchg->fill(pTZ, (numTrans1+numTrans2)/(4*PI/3), weight);
00158 _hist_pmaxnchg->fill(pTZ, (numTrans1>numTrans2 ? numTrans1 : numTrans2)/(2*PI/3), weight);
00159 _hist_pminnchg->fill(pTZ, (numTrans1<numTrans2 ? numTrans1 : numTrans2)/(2*PI/3), weight);
00160 _hist_pdifnchg->fill(pTZ, abs(numTrans1-numTrans2)/(2*PI/3), weight);
00161 _hist_anchg->fill(pTZ, numAway/(4*PI/3), weight);
00162
00163 _hist_tcptsum->fill(pTZ, ptSumToward/(4*PI/3), weight);
00164 _hist_pcptsum->fill(pTZ, (ptSumTrans1+ptSumTrans2)/(4*PI/3), weight);
00165 _hist_pmaxcptsum->fill(pTZ, (ptSumTrans1>ptSumTrans2 ? ptSumTrans1 : ptSumTrans2)/(2*PI/3), weight);
00166 _hist_pmincptsum->fill(pTZ, (ptSumTrans1<ptSumTrans2 ? ptSumTrans1 : ptSumTrans2)/(2*PI/3), weight);
00167 _hist_pdifcptsum->fill(pTZ, fabs(ptSumTrans1-ptSumTrans2)/(2*PI/3), weight);
00168 _hist_acptsum->fill(pTZ, ptSumAway/(4*PI/3), weight);
00169
00170 if (numToward > 0) {
00171 _hist_tcptave->fill(pTZ, ptSumToward/numToward, weight);
00172 _hist_tcptmax->fill(pTZ, ptMaxToward, weight);
00173 }
00174 if ((numTrans1+numTrans2) > 0) {
00175 _hist_pcptave->fill(pTZ, (ptSumTrans1+ptSumTrans2)/(numTrans1+numTrans2), weight);
00176 _hist_pcptmax->fill(pTZ, (ptMaxTrans1 > ptMaxTrans2 ? ptMaxTrans1 : ptMaxTrans2), weight);
00177 }
00178 if (numAway > 0) {
00179 _hist_acptave->fill(pTZ, ptSumAway/numAway, weight);
00180 _hist_acptmax->fill(pTZ, ptMaxAway, weight);
00181 }
00182
00183
00184 _hist_zptvsnchg->fill(numParticles-2, pTZ, weight);
00185 }
00186
00187
00188 void finalize() {
00189
00190 }
00191
00192
00193
00194 private:
00195
00196 AIDA::IProfile1D *_hist_tnchg;
00197 AIDA::IProfile1D *_hist_pnchg;
00198 AIDA::IProfile1D *_hist_pmaxnchg;
00199 AIDA::IProfile1D *_hist_pminnchg;
00200 AIDA::IProfile1D *_hist_pdifnchg;
00201 AIDA::IProfile1D *_hist_anchg;
00202 AIDA::IProfile1D *_hist_tcptsum;
00203 AIDA::IProfile1D *_hist_pcptsum;
00204 AIDA::IProfile1D *_hist_pmaxcptsum;
00205 AIDA::IProfile1D *_hist_pmincptsum;
00206 AIDA::IProfile1D *_hist_pdifcptsum;
00207 AIDA::IProfile1D *_hist_acptsum;
00208 AIDA::IProfile1D *_hist_tcptave;
00209 AIDA::IProfile1D *_hist_pcptave;
00210 AIDA::IProfile1D *_hist_acptave;
00211 AIDA::IProfile1D *_hist_tcptmax;
00212 AIDA::IProfile1D *_hist_pcptmax;
00213 AIDA::IProfile1D *_hist_acptmax;
00214 AIDA::IProfile1D *_hist_zptvsnchg;
00215 AIDA::IProfile1D *_hist_cptavevsnchg;
00216 AIDA::IProfile1D *_hist_cptavevsnchgsmallzpt;
00217
00218 };
00219
00220
00221
00222
00223 DECLARE_RIVET_PLUGIN(CDF_2008_NOTE_9351);
00224
00225 }