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// -*- C++ -*-
#include "Rivet/Analysis.hh"
#include "Rivet/Projections/ChargedFinalState.hh"
namespace Rivet {
/// @brief Average multiplcity at a range of energies
class JADE_1983_I190818 : public Analysis {
public :
/// Constructor
RIVET_DEFAULT_ANALYSIS_CTOR(JADE_1983_I190818);
/// @name Analysis methods
//@{
/// Book histograms and initialise projections before the run
void init () {
const ChargedFinalState cfs;
declare(cfs, "CFS" );
if ( ! (isCompatibleWithSqrtS(12.0 ) ||
isCompatibleWithSqrtS(30.0 ) ||
isCompatibleWithSqrtS(35.0 ) )) {
MSG_WARNING("CoM energy of events sqrt(s) = " << sqrtS()/ GeV
<< " doesn't match any available analysis energy ." );
}
book(_counter, "/TMP/MULT" );
book(_mult, 1 , 1 , 1 );
}
/// Perform the per-event analysis
void analyze (const Event& event) {
const FinalState& cfs = apply< FinalState> (event, "CFS" );
MSG_DEBUG("Total charged multiplicity = " << cfs.size());
_counter-> fill(cfs.size());
}
/// Normalise histograms etc., after the run
void finalize () {
scale(_counter,1. / sumOfWeights());
double val = _counter-> val();
double err = _counter-> err();
Scatter2D tempScat(refData(1 , 1 , 1 ));
for (size_t b = 0 ; b < tempScat.numPoints(); b++ ) {
const double x = tempScat.point(b).x();
pair< double ,double > ex = tempScat.point(b).xErrs();
pair< double ,double > ex2 = ex;
if (ex2.first == 0. ) ex2. first= 0.0001 ;
if (ex2.second== 0. ) ex2.second= 0.0001 ;
if (inRange(sqrtS()/ GeV, x- ex2.first, x+ ex2.second)) {
_mult-> addPoint(x, val, ex, make_pair(err,err));
}
else {
_mult-> addPoint(x, 0. , ex, make_pair(0. ,.0 ));
}
}
}
//@}
private :
// Histogram
CounterPtr _counter;
Scatter2DPtr _mult;
};
// The hook for the plugin system
RIVET_DECLARE_PLUGIN(JADE_1983_I190818);
}