Rivet analyses


title: BELLE_2014_I1282602

Cross section for $e^+e^-\to J/\psi K^+K^-$ at energies between 4.175 and 5.975 GeV

Experiment: BELLE (KEKB)

Inspire ID: 1282602

Status: VALIDATED

Authors: - Peter Richardson

References: - Phys.Rev. D89 (2014) 072015, 2014

Beams: e+ e-

Beam energies: (2.1, 2.1); (2.1, 2.1); (2.2, 2.2); (2.2, 2.2); (2.3, 2.3); (2.3, 2.3); (2.3, 2.3); (2.3, 2.3); (2.4, 2.4); (2.4, 2.4); (2.4, 2.4); (2.4, 2.4); (2.5, 2.5); (2.5, 2.5); (2.5, 2.5); (2.5, 2.5); (2.6, 2.6); (2.6, 2.6); (2.6, 2.6); (2.6, 2.6); (2.7, 2.7); (2.7, 2.7); (2.7, 2.7); (2.7, 2.7); (2.8, 2.8); (2.8, 2.8); (2.8, 2.8); (2.9, 2.9); (2.9, 2.9); (2.9, 2.9); (2.9, 2.9); (3.0, 3.0); (3.0, 3.0)GeV

Run details: - e+e- to hadrons

Measurement of the cross section for $e^+e^-\to J/\psi K^+K^-$ at energies between 4.175 and 5.975 GeV using radiative return by BELLE. The paper also includes $J\psi K^0_SK^0_S$ but the data is a confidence limit and is therefore not implemented.

Source code:BELLE_2014_I1282602.cc

```c++ // -- C++ --

include "Rivet/Analysis.hh"

include "Rivet/Projections/FinalState.hh"

include "Rivet/Projections/UnstableParticles.hh"

namespace Rivet {

/// @brief e+e- -> Jpsi K+K- class BELLE_2014_I1282602 : public Analysis { public:

/// Constructor
RIVET_DEFAULT_ANALYSIS_CTOR(BELLE_2014_I1282602);


/// @name Analysis methods
/// @{

/// Book histograms and initialise projections before the run
void init() {
  declare(FinalState(), "FS");
  declare(UnstableParticles(), "UFS");

  book(_nJPsi, 1, 1, 1);
  for (const string& en : _nJPsi.binning().edges<0>()) {
    const double eval = stod(en);
    if (isCompatibleWithSqrtS(eval)) {
      _sqs = en;
      break;
    }
  }
  raiseBeamErrorIf(_sqs.empty());
}

void findChildren(const Particle& p, map<long, int>& nRes, int& ncount) const {
  for (const Particle& child : p.children()) {
    if (child.children().empty()) {
      --nRes[child.pid()];
      --ncount;
    }
    else {
      findChildren(child, nRes, ncount);
    }
  }
}


/// Perform the per-event analysis
void analyze(const Event& event) {
  const FinalState& fs = apply<FinalState>(event, "FS");
  map<long, int> nCount;
  int ntotal(0);
  for (const Particle& p : fs.particles()) {
    nCount[p.pid()] += 1;
    ++ntotal;
  }
  const FinalState& ufs = apply<FinalState>(event, "UFS");
  for (const Particle& p : ufs.particles()) {
    if (p.children().empty()) continue;
    // find the j/psi
    if (p.pid() == 443) {
      map<long, int> nRes = nCount;
      int ncount = ntotal;
      findChildren(p, nRes, ncount);
      // J/psi pi+pi-
      if (ncount != 2) continue;
      bool matched = true;
      for (const auto& val : nRes) {
        if (abs(val.first) == 321) {
          if (val.second != 1) {
            matched = false;
            break;
          }
        }
        else if (val.second != 0) {
          matched = false;
          break;
        }
      }
      if (matched) {
        _nJPsi->fill(_sqs);
        break;
      }
    }
  }
}


/// Normalise histograms etc., after the run
void finalize() {
  scale(_nJPsi, crossSection() / sumOfWeights() / picobarn);
}

/// @}


/// @name Histograms
/// @{
BinnedHistoPtr<string> _nJPsi;
string _sqs = "";
/// @}

};

RIVET_DECLARE_PLUGIN(BELLE_2014_I1282602);

} ```