42 #include "fastjet/ClusterSequenceArea.hh"      53   vector<fastjet::PseudoJet> input_particles;
    55   double px, py , pz, E;
    56   while (cin >> px >> py >> pz >> E) {
    95   unsigned int n_repeat = 3; 
    96   double ghost_area = 0.01; 
   112   vector<fastjet::PseudoJet> inclusive_jets = sorted_by_pt(clust_seq.
inclusive_jets(ptmin));
   123   cout << 
"Area: " << area_def.
description() << endl << endl;
   126   printf(
"%5s %15s %15s %15s %15s %15s\n",
"jet #", 
"rapidity", 
"phi", 
"pt", 
"area", 
"area error");
   129   for (
unsigned int i = 0; i < inclusive_jets.size(); i++) {
   130     printf(
"%5u %15.8f %15.8f %15.8f %15.8f %15.8f\n", i,
   131            inclusive_jets[i].rap(), inclusive_jets[i].phi(), inclusive_jets[i].perp(),
   132            inclusive_jets[i].area(), inclusive_jets[i].area_error());
 General class for user to obtain ClusterSequence with additional area information. 
 
std::vector< PseudoJet > inclusive_jets(const double ptmin=0.0) const 
return a vector of all jets (in the sense of the inclusive algorithm) with pt >= ptmin. 
 
the longitudinally invariant kt algorithm 
 
class that holds a generic area definition 
 
std::string description() const 
return a textual description of the current jet definition 
 
std::string description() const 
return a description of the current area definition 
 
int main()
an example program showing how to use fastjet 
 
Parameters to configure the computation of jet areas using ghosts. 
 
Class to contain pseudojets, including minimal information of use to jet-clustering routines...
 
class that is intended to hold a full definition of the jet clusterer