40 #include "fastjet/ClusterSequence.hh"    41 #include "fastjet/Selector.hh"     52   vector<PseudoJet> input_particles;
    54   double px, py , pz, E;
    55   while (cin >> px >> py >> pz >> E) {
    58     input_particles.push_back(
PseudoJet(px,py,pz,E)); 
    68   cout << input_particles.size() << 
" particles before selector" << endl;
    69   input_particles = particle_selector(input_particles);
    70   cout << input_particles.size() << 
" particles after selector" << endl;
    96   vector<PseudoJet> inclusive_jets = 
sorted_by_pt(jet_selector(clust_seq.inclusive_jets()));
   106   double rapmin, rapmax;
   108   cout << 
"Ran " << jet_def.description() << endl;
   110   cout << 
"Selected particles: " << particle_selector.
description() << endl;
   112   cout << 
"  with a total rapidity range of [" << rapmin << 
", " << rapmax << 
"]" << endl;
   114   cout << 
"Selected jets: " << jet_selector.
description() << endl;
   116   cout << 
"  with a total rapidity range of [" << rapmin << 
", " << rapmax << 
"]" << endl;
   119   printf(
"%5s %15s %15s %15s\n",
"jet #", 
"rapidity", 
"phi", 
"pt");
   122   for (
unsigned int i = 0; i < inclusive_jets.size(); i++) {
   123     printf(
"%5u %15.8f %15.8f %15.8f\n",
   124            i, inclusive_jets[i].rap(), inclusive_jets[i].phi(),
   125            inclusive_jets[i].perp());
 vector< PseudoJet > sorted_by_pt(const vector< PseudoJet > &jets)
return a vector of jets sorted into decreasing kt2 
Selector SelectorNHardest(unsigned int n)
select the n hardest objects 
Selector SelectorAbsRapMax(double absrapmax)
select objects with |rap| <= absrapmax 
void get_rapidity_extent(double &rapmin, double &rapmax) const
returns the rapidity range for which it may return "true" 
Selector SelectorPtMin(double ptmin)
select objects with pt >= ptmin 
Selector SelectorAbsRapRange(double rapmin, double rapmax)
select objects with absrapmin <= |rap| <= absrapmax 
int main()
an example program showing how to use fastjet 
Class that encodes information about cuts and other selection criteria that can be applied to PseudoJ...
std::string description() const
returns a textual description of the selector 
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