35 #include "fastjet/ClusterSequenceAreaBase.hh" 
   38 FASTJET_BEGIN_NAMESPACE
 
   44 LimitedWarning ClusterSequenceAreaBase::_warnings;
 
   45 LimitedWarning ClusterSequenceAreaBase::_warnings_zero_area;
 
   46 LimitedWarning ClusterSequenceAreaBase::_warnings_empty_area;
 
   57 double ClusterSequenceAreaBase::empty_area(
const Selector & selector)
 const {
 
   59   if (has_explicit_ghosts()) {
return 0.0;}
 
   60   else { 
return empty_area_from_jets(inclusive_jets(0.0), selector);}
 
   69 double ClusterSequenceAreaBase::empty_area_from_jets(
 
   70                       const std::vector<PseudoJet> & all_jets,
 
   72   _check_selector_good_for_median(selector);
 
   74   double empty = selector.
area();
 
   75   for (
unsigned i = 0; i < all_jets.size(); i++) {
 
   76     if (selector.
pass(all_jets[i])) empty -= area(all_jets[i]);
 
   81 double ClusterSequenceAreaBase::median_pt_per_unit_area(
const Selector & selector)
 const {
 
   82   return median_pt_per_unit_something(selector,
false);
 
   85 double ClusterSequenceAreaBase::median_pt_per_unit_area_4vector(
const Selector & selector)
 const {
 
   86   return median_pt_per_unit_something(selector,
true);
 
   94 double ClusterSequenceAreaBase::median_pt_per_unit_something(
 
   95                 const Selector & selector, 
bool use_area_4vector)
 const {
 
   97   double median, sigma, mean_area;
 
   98   get_median_rho_and_sigma(selector, use_area_4vector, median, sigma, mean_area);
 
  108 void ClusterSequenceAreaBase::parabolic_pt_per_unit_area(
 
  109        double & a, 
double & b, 
const Selector & selector, 
 
  110        double exclude_above, 
bool use_area_4vector)
 const {
 
  114   _check_selector_good_for_median(selector);
 
  118   double mean_f=0, mean_x2=0, mean_x4=0, mean_fx2=0; 
 
  120   vector<PseudoJet> incl_jets = inclusive_jets();
 
  122   for (
unsigned i = 0; i < incl_jets.size(); i++) {
 
  123     if (selector.
pass(incl_jets[i])) {
 
  125       if ( use_area_4vector ) {
 
  126           this_area = area_4vector(incl_jets[i]).perp();     
 
  128           this_area = area(incl_jets[i]);
 
  130       double f = incl_jets[i].perp()/this_area;
 
  131       if (exclude_above <= 0.0 || f < exclude_above) {
 
  132         double x = incl_jets[i].rap(); 
double x2 = x*x;
 
  156     b = (mean_f*mean_x2 - mean_fx2)/(mean_x2*mean_x2 - mean_x4);
 
  157     a = mean_f - b*mean_x2;
 
  164 void ClusterSequenceAreaBase::get_median_rho_and_sigma(
 
  165             const Selector & selector, 
bool use_area_4vector,
 
  166             double & median, 
double & sigma, 
double & mean_area)
 const {
 
  168   vector<PseudoJet> incl_jets = inclusive_jets();
 
  169   get_median_rho_and_sigma(incl_jets, selector, use_area_4vector,
 
  170                            median, sigma, mean_area, 
true);
 
  174 void ClusterSequenceAreaBase::get_median_rho_and_sigma(
 
  175             const vector<PseudoJet> & all_jets,
 
  176             const Selector & selector, 
bool use_area_4vector,
 
  177             double & median, 
double & sigma, 
double & mean_area,
 
  178             bool all_are_incl)
 const {
 
  180   _check_jet_alg_good_for_median();
 
  185   _check_selector_good_for_median(selector);
 
  187   vector<double> pt_over_areas;
 
  188   double total_area  = 0.0;
 
  189   double total_njets = 0;
 
  191   for (
unsigned i = 0; i < all_jets.size(); i++) {
 
  192     if (selector.
pass(all_jets[i])) {
 
  194       if (use_area_4vector) {
 
  195           this_area = area_4vector(all_jets[i]).perp();
 
  197           this_area = area(all_jets[i]);
 
  201         pt_over_areas.push_back(all_jets[i].perp()/this_area);
 
  203         _warnings_zero_area.warn(
"ClusterSequenceAreaBase::get_median_rho_and_sigma(...): discarded jet with zero area. Zero-area jets may be due to (i) too large a ghost area (ii) a jet being outside the ghost range (iii) the computation not being done using an appropriate algorithm (kt;C/A).");
 
  206       total_area  += this_area;
 
  212   if (pt_over_areas.size() == 0) {
 
  222   sort(pt_over_areas.begin(), pt_over_areas.end());
 
  226   double posn[2] = {0.5, (1.0-0.6827)/2.0};
 
  229   double n_empty, empty_a;
 
  230   if (has_explicit_ghosts()) {
 
  238   } 
else if (all_are_incl) {
 
  240     empty_a = empty_area(selector);
 
  241     n_empty = n_empty_jets(selector);
 
  246     empty_a = empty_area_from_jets(all_jets, selector);
 
  247     mean_area = total_area / total_njets; 
 
  248     n_empty   = empty_a / mean_area;
 
  252   total_njets += n_empty;
 
  253   total_area  += empty_a;
 
  258   int pt_over_areas_size = pt_over_areas.size();
 
  259   if (n_empty < -pt_over_areas_size/4.0)
 
  260     _warnings_empty_area.warn(
"ClusterSequenceAreaBase::get_median_rho_and_sigma(...): the estimated empty area is suspiciously large and negative and may lead to an over-estimation of rho. This may be due to (i) a rare statistical fluctuation or (ii) too small a range used to estimate the background properties.");
 
  262   for (
int i = 0; i < 2; i++) {
 
  263     double nj_median_pos = 
 
  264       (pt_over_areas_size-1.0 + n_empty)*posn[i] - n_empty;
 
  265     double nj_median_ratio;
 
  266     if (nj_median_pos >= 0 && pt_over_areas_size > 1) {
 
  267       int int_nj_median = int(nj_median_pos);
 
  270       if (int_nj_median+1 > pt_over_areas_size-1){
 
  271         int_nj_median = pt_over_areas_size-2;
 
  272         nj_median_pos = pt_over_areas_size-1;
 
  276         pt_over_areas[int_nj_median] * (int_nj_median+1-nj_median_pos)
 
  277         + pt_over_areas[int_nj_median+1] * (nj_median_pos - int_nj_median);
 
  279       nj_median_ratio = 0.0;
 
  281     res[i] = nj_median_ratio;
 
  284   double error  = res[0] - res[1];
 
  285   mean_area = total_area / total_njets;
 
  286   sigma  = error * sqrt(mean_area);
 
  294 vector<PseudoJet> ClusterSequenceAreaBase::subtracted_jets(
const double rho,
 
  297   vector<PseudoJet> sub_jets;
 
  298   vector<PseudoJet> jets_local = 
sorted_by_pt(inclusive_jets(ptmin));
 
  299   for (
unsigned i=0; i<jets_local.size(); i++) {
 
  300      PseudoJet sub_jet = subtracted_jet(jets_local[i],rho);
 
  301      sub_jets.push_back(sub_jet);
 
  310 vector<PseudoJet> ClusterSequenceAreaBase::subtracted_jets(
 
  314   double rho = median_pt_per_unit_area_4vector(selector);
 
  315   return subtracted_jets(rho,ptmin);
 
  321                                                   const double rho)
 const {
 
  325   if (rho*area4vect.
perp() < jet.
perp() ) { 
 
  326     sub_jet = jet - rho*area4vect;
 
  327   } 
else { sub_jet = 
PseudoJet(0.0,0.0,0.0,0.0); }
 
  345   double rho = median_pt_per_unit_area_4vector(selector);
 
  346   PseudoJet sub_jet = subtracted_jet(jet, rho);
 
  352 double ClusterSequenceAreaBase::subtracted_pt(
const PseudoJet & jet,
 
  354                                               bool use_area_4vector)
 const {
 
  355   if ( use_area_4vector ) { 
 
  356      PseudoJet sub_jet = subtracted_jet(jet,rho);
 
  357      return sub_jet.
perp();
 
  359      return jet.
perp() - rho*area(jet);
 
  367 double ClusterSequenceAreaBase::subtracted_pt(
const PseudoJet & jet,
 
  369                                               bool use_area_4vector)
 const {
 
  370   if ( use_area_4vector ) { 
 
  371      PseudoJet sub_jet = subtracted_jet(jet,selector);
 
  372      return sub_jet.
perp();
 
  374      double rho = median_pt_per_unit_area(selector);
 
  375      return subtracted_pt(jet,rho,
false);
 
  381 void ClusterSequenceAreaBase::_check_selector_good_for_median(
const Selector &selector)
 const{
 
  384     throw Error(
"ClusterSequenceAreaBase: empty area can only be computed from selectors with a finite area");
 
  389     throw Error(
"ClusterSequenceAreaBase: empty area can only be computed from selectors that apply jet by jet");
 
  395 void ClusterSequenceAreaBase::_check_jet_alg_good_for_median()
 const {
 
  396   if (jet_def().jet_algorithm() != kt_algorithm
 
  397       && jet_def().jet_algorithm() != cambridge_algorithm
 
  398       && jet_def().jet_algorithm() !=  cambridge_for_passive_algorithm) {
 
  399     _warnings.warn(
"ClusterSequenceAreaBase: jet_def being used may not be suitable for estimating diffuse backgrounds (good options are kt, cam)");
 
  405 FASTJET_END_NAMESPACE
 
vector< PseudoJet > sorted_by_pt(const vector< PseudoJet > &jets)
return a vector of jets sorted into decreasing kt2 
 
bool applies_jet_by_jet() const 
returns true if this can be applied jet by jet 
 
void set_user_index(const int index)
set the user_index, intended to allow the user to add simple identifying information to a particle/je...
 
const SharedPtr< PseudoJetStructureBase > & structure_shared_ptr() const 
return a reference to the shared pointer to the PseudoJetStructureBase associated with this PseudoJet...
 
int cluster_hist_index() const 
return the cluster_hist_index, intended to be used by clustering routines. 
 
void set_cluster_hist_index(const int index)
set the cluster_hist_index, intended to be used by clustering routines. 
 
base class corresponding to errors that can be thrown by FastJet 
 
bool has_finite_area() const 
returns true if it has a meaningful and finite area (i.e. 
 
Class that encodes information about cuts and other selection criteria that can be applied to PseudoJ...
 
double area() const 
returns the rapidity-phi area associated with the Selector (throws InvalidArea if the area does not m...
 
int user_index() const 
return the user_index, 
 
void set_structure_shared_ptr(const SharedPtr< PseudoJetStructureBase > &structure)
set the associated structure 
 
double perp() const 
returns the scalar transverse momentum 
 
bool pass(const PseudoJet &jet) const 
return true if the jet passes the selection 
 
Class to contain pseudojets, including minimal information of use to jet-clustering routines...