FastJets Class Reference

Project out jets found using the FastJet package jet algorithms. More...

#include <FastJets.hh>

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List of all members.

Public Types

enum  JetAlgName {
  KT, CAM, SISCONE, ANTIKT,
  PXCONE, ATLASCONE, CMSCONE, CDFJETCLU,
  CDFMIDPOINT, D0ILCONE, JADE, DURHAM,
  TRACKJET
}
 

Wrapper enum for selected Fastjet jet algorithms.

More...
typedef Jet entity_type
typedef Jets collection_type

Public Member Functions

void reset ()
 Reset the projection. Jet def, etc. are unchanged.
void useJetArea (fastjet::AreaDefinition *adef)
 Use provided jet area definition.
size_t numJets (double ptmin=0.0) const
 Number of jets above the $ p_\perp $ cut.
size_t size () const
 Number of jets.
Jets _jets (double ptmin=0.0) const
 Get the jets (unordered).
PseudoJets pseudoJets (double ptmin=0.0) const
 Get the pseudo jets (unordered).
PseudoJets pseudoJetsByPt (double ptmin=0.0) const
 Get the pseudo jets, ordered by $ p_T $.
PseudoJets pseudoJetsByE (double ptmin=0.0) const
 Get the pseudo jets, ordered by $ E $.
PseudoJets pseudoJetsByRapidity (double ptmin=0.0) const
 Get the pseudo jets, ordered by rapidity.
const fastjet::ClusterSequence * clusterSeq () const
 Return the cluster sequence (FastJet-specific).
const
fastjet::ClusterSequenceArea * 
clusterSeqArea () const
 Return the cluster sequence (FastJet-specific).
const fastjet::JetDefinition & jetDef () const
 Return the jet definition (FastJet-specific).
const fastjet::AreaDefinition * areaDef () const
 Return the area definition (FastJet-specific). May be null.
vector< double > ySubJet (const fastjet::PseudoJet &jet) const
 Get the subjet splitting variables for the given jet.
fastjet::PseudoJet splitJet (fastjet::PseudoJet jet, double &last_R) const
 Split a jet a la PRL100,242001(2008). Based on code from G.Salam, A.Davison.
fastjet::PseudoJet filterJet (fastjet::PseudoJet jet, double &stingy_R, const double def_R) const
 Filter a jet a la PRL100,242001(2008). Based on code from G.Salam, A.Davison.
void calc (const ParticleVector &ps)
 Do the calculation locally (no caching).
void useInvisibles (bool useinvis=true)
 Include invisible particles in jet construction. The default behaviour is that jets are only constructed from visible (i.e. charged under an SM gauge group) particles. Some jet studies, including those from ATLAS, use a definition in which neutrinos from hadron decays are included (via MC correction) in the experimental jet definition. Setting this flag to true avoids the automatic restriction to a VisibleFinalState.
virtual Jets jets (double ptmin=0.0, double ptmax=MAXDOUBLE, double rapmin=-MAXDOUBLE, double rapmax=MAXDOUBLE, RapScheme rapscheme=PSEUDORAPIDITY) const
template<typename F >
Jets jets (F sorter, double ptmin, double ptmax, double rapmin, double rapmax, RapScheme rapscheme) const
Jets jetsByPt (double ptmin=0.0, double ptmax=MAXDOUBLE, double rapmin=-MAXDOUBLE, double rapmax=MAXDOUBLE, RapScheme rapscheme=PSEUDORAPIDITY) const
Jets jetsByP (double ptmin=0.0, double ptmax=MAXDOUBLE, double rapmin=-MAXDOUBLE, double rapmax=MAXDOUBLE, RapScheme rapscheme=PSEUDORAPIDITY) const
Jets jetsByE (double ptmin=0.0, double ptmax=MAXDOUBLE, double rapmin=-MAXDOUBLE, double rapmax=MAXDOUBLE, RapScheme rapscheme=PSEUDORAPIDITY) const
Jets jetsByEt (double ptmin=0.0, double ptmax=MAXDOUBLE, double rapmin=-MAXDOUBLE, double rapmax=MAXDOUBLE, RapScheme rapscheme=PSEUDORAPIDITY) const
collection_type entities () const
 Template-usable interface common to FinalState.
bool before (const Projection &p) const
virtual const std::set< PdgIdPairbeamPairs () const
virtual std::string name () const
 Get the name of the projection.
ProjectionaddPdgIdPair (PdgId beam1, PdgId beam2)
 Add a colliding beam pair.
LoggetLog () const
 Get a Log object based on the getName() property of the calling projection object.
void setName (const std::string &name)
 Used by derived classes to set their name.
Constructors etc.

 FastJets (const FinalState &fsp, JetAlgName alg, double rparameter, double seed_threshold=1.0)
 FastJets (const FinalState &fsp, fastjet::JetAlgorithm type, fastjet::RecombinationScheme recom, double rparameter)
 Native argument constructor, using FastJet alg/scheme enums.
 FastJets (const FinalState &fsp, fastjet::JetDefinition::Plugin &plugin)
 Explicitly pass in an externally-constructed plugin.
 FastJets (JetAlgName alg, double rparameter, double seed_threshold=1.0)
 Same thing as above, but we want to pass the particles directly to the calc method.
 FastJets (fastjet::JetAlgorithm type, fastjet::RecombinationScheme recom, double rparameter)
 FastJets (fastjet::JetDefinition::Plugin &plugin)
virtual const Projectionclone () const
 Clone on the heap.
Projection "getting" functions

std::set< ConstProjectionPtrgetProjections () const
 Get the contained projections, including recursion.
template<typename PROJ >
const PROJ & getProjection (const std::string &name) const
 Get the named projection, specifying return type via a template argument.
const ProjectiongetProjection (const std::string &name) const
Projection applying functions

template<typename PROJ >
const PROJ & applyProjection (const Event &evt, const PROJ &proj) const
 Apply the supplied projection on event.
template<typename PROJ >
const PROJ & applyProjection (const Event &evt, const Projection &proj) const
 Apply the supplied projection on event.
template<typename PROJ >
const PROJ & applyProjection (const Event &evt, const std::string &name) const
 Apply the named projection on event.

Protected Member Functions

void project (const Event &e)
 Perform the projection on the Event.
int compare (const Projection &p) const
 Compare projections.
Cmp< ProjectionmkNamedPCmp (const Projection &otherparent, const std::string &pname) const
Cmp< ProjectionmkPCmp (const Projection &otherparent, const std::string &pname) const
ProjectionHandlergetProjHandler () const
 Get a reference to the ProjectionHandler for this thread.
Projection registration functions

template<typename PROJ >
const PROJ & addProjection (const PROJ &proj, const std::string &name)
const Projection_addProjection (const Projection &proj, const std::string &name)
 Untemplated function to do the work...

Protected Attributes

bool _useInvisibles
 Flag to determine whether or not the VFS wrapper is to be used.
bool _allowProjReg
 Flag to forbid projection registration in analyses until the init phase.

Private Member Functions

Jets _pseudojetsToJets (const PseudoJets &pjets) const
void _init1 (JetAlgName alg, double rparameter, double seed_threshold)
void _init2 (fastjet::JetAlgorithm type, fastjet::RecombinationScheme recom, double rparameter)
void _init3 (fastjet::JetDefinition::Plugin &plugin)

Private Attributes

fastjet::JetDefinition _jdef
 Jet definition.
fastjet::AreaDefinition * _adef
 Pointer to user-handled area definition.
shared_ptr
< fastjet::ClusterSequence > 
_cseq
 Cluster sequence.
shared_ptr
< fastjet::JetDefinition::Plugin > 
_plugin
 FastJet external plugin.
map< int, vector< double > > _yscales
 Map of vectors of y scales. This is mutable so we can use caching/lazy evaluation.
map< int, Particle_particles
 set of particles sorted by their PT2

Friends

class Event
 Event is a friend.
class Cmp< Projection >
 The Cmp specialization for Projection is a friend.

Detailed Description

Project out jets found using the FastJet package jet algorithms.

Definition at line 51 of file FastJets.hh.


Member Typedef Documentation

typedef Jets collection_type [inherited]

Definition at line 171 of file JetAlg.hh.

typedef Jet entity_type [inherited]

Definition at line 170 of file JetAlg.hh.


Member Enumeration Documentation

enum JetAlgName

Wrapper enum for selected Fastjet jet algorithms.

Enumerator:
KT 
CAM 
SISCONE 
ANTIKT 
PXCONE 
ATLASCONE 
CMSCONE 
CDFJETCLU 
CDFMIDPOINT 
D0ILCONE 
JADE 
DURHAM 
TRACKJET 

Definition at line 55 of file FastJets.hh.

00055                     { KT, CAM, SISCONE, ANTIKT,
00056                       PXCONE,
00057                       ATLASCONE, CMSCONE,
00058                       CDFJETCLU, CDFMIDPOINT, D0ILCONE,
00059                       JADE, DURHAM, TRACKJET };


Constructor & Destructor Documentation

FastJets ( const FinalState fsp,
JetAlgName  alg,
double  rparameter,
double  seed_threshold = 1.0 
)

"Wrapped" argument constructor using Rivet enums for most common jet alg choices (including some plugins). For the built-in algs, E-scheme recombination is used. For full control of FastJet built-in jet algs, use the native arg constructor.

Definition at line 9 of file FastJets.cc.

References FastJets::_init1().

Referenced by FastJets::clone().

00010     : JetAlg(fsp), _adef(0)
00011   {
00012     _init1(alg, rparameter, seed_threshold);
00013   }

FastJets ( const FinalState fsp,
fastjet::JetAlgorithm  type,
fastjet::RecombinationScheme  recom,
double  rparameter 
)

Native argument constructor, using FastJet alg/scheme enums.

Definition at line 16 of file FastJets.cc.

References FastJets::_init2().

00018     : JetAlg(fsp), _adef(0)
00019   {
00020     _init2(type, recom, rparameter);
00021   }

FastJets ( const FinalState fsp,
fastjet::JetDefinition::Plugin &  plugin 
)

Explicitly pass in an externally-constructed plugin.

Definition at line 24 of file FastJets.cc.

References FastJets::_init3().

00026     : JetAlg(fsp), _adef(0)
00027   {
00028     _init3(plugin);
00029   }

FastJets ( JetAlgName  alg,
double  rparameter,
double  seed_threshold = 1.0 
)

Same thing as above, but we want to pass the particles directly to the calc method.

Definition at line 32 of file FastJets.cc.

References FastJets::_init1().

00033     : _adef(0)
00034   {
00035     _init1(alg, rparameter, seed_threshold);
00036   }

FastJets ( fastjet::JetAlgorithm  type,
fastjet::RecombinationScheme  recom,
double  rparameter 
)

Definition at line 38 of file FastJets.cc.

References FastJets::_init2().

00040     : _adef(0)
00041   {
00042     _init2(type, recom, rparameter);
00043   }

FastJets ( fastjet::JetDefinition::Plugin &  plugin  ) 

Definition at line 46 of file FastJets.cc.

References FastJets::_init3().

00047     : _adef(0)
00048   {
00049     _init3(plugin);
00050   }


Member Function Documentation

const Projection & _addProjection ( const Projection proj,
const std::string &  name 
) [protected, inherited]

Untemplated function to do the work...

Definition at line 33 of file ProjectionApplier.cc.

References ProjectionApplier::_allowProjReg, ProjectionApplier::getProjHandler(), ProjectionApplier::name(), Projection::name(), and ProjectionHandler::registerProjection().

Referenced by ProjectionApplier::addProjection().

00034                                                                              {
00035     if (!_allowProjReg) {
00036       cerr << "Trying to register projection '"
00037            << proj.name() << "' before init phase in '" << this->name() << "'." << endl;
00038       exit(2);
00039     }
00040     const Projection& reg = getProjHandler().registerProjection(*this, proj, name);
00041     return reg;
00042   }

void _init1 ( JetAlgName  alg,
double  rparameter,
double  seed_threshold 
) [inline, private]

Definition at line 173 of file FastJets.hh.

References FastJets::_jdef, FastJets::_plugin, FastJets::ANTIKT, FastJets::ATLASCONE, FastJets::CAM, FastJets::CDFJETCLU, FastJets::CDFMIDPOINT, FastJets::CMSCONE, FastJets::D0ILCONE, FastJets::DURHAM, FastJets::JADE, FastJets::KT, MSG_DEBUG, FastJets::PXCONE, Projection::setName(), FastJets::SISCONE, and FastJets::TRACKJET.

Referenced by FastJets::FastJets().

00173                                                                           {
00174       setName("FastJets");
00175       MSG_DEBUG("R parameter = " << rparameter);
00176       MSG_DEBUG("Seed threshold = " << seed_threshold);
00177       if (alg == KT) {
00178         _jdef = fastjet::JetDefinition(fastjet::kt_algorithm, rparameter, fastjet::E_scheme);
00179       } else if (alg == CAM) {
00180         _jdef = fastjet::JetDefinition(fastjet::cambridge_algorithm, rparameter, fastjet::E_scheme);
00181       } else if (alg == ANTIKT) {
00182         _jdef = fastjet::JetDefinition(fastjet::antikt_algorithm, rparameter, fastjet::E_scheme);
00183       } else if (alg == DURHAM) {
00184         _jdef = fastjet::JetDefinition(fastjet::ee_kt_algorithm, fastjet::E_scheme);
00185       } else {
00186         // Plugins:
00187         if (alg == SISCONE) {
00188           const double OVERLAP_THRESHOLD = 0.75;
00189           _plugin.reset(new fastjet::SISConePlugin(rparameter, OVERLAP_THRESHOLD));
00190         } else if (alg == PXCONE) {
00191           string msg = "PxCone currently not supported, since FastJet doesn't install it by default. ";
00192           msg += "Please notify the Rivet authors if this behaviour should be changed.";
00193           throw Error(msg);
00194           //_plugin.reset(new fastjet::PxConePlugin(rparameter));
00195         } else if (alg == ATLASCONE) {
00196           const double OVERLAP_THRESHOLD = 0.5;
00197           _plugin.reset(new fastjet::ATLASConePlugin(rparameter, seed_threshold, OVERLAP_THRESHOLD));
00198         } else if (alg == CMSCONE) {
00199           _plugin.reset(new fastjet::CMSIterativeConePlugin(rparameter, seed_threshold));
00200         } else if (alg == CDFJETCLU) {
00201           const double OVERLAP_THRESHOLD = 0.75;
00202           _plugin.reset(new fastjet::CDFJetCluPlugin(rparameter, OVERLAP_THRESHOLD, seed_threshold));
00203         } else if (alg == CDFMIDPOINT) {
00204           const double OVERLAP_THRESHOLD = 0.5;
00205           _plugin.reset(new fastjet::CDFMidPointPlugin(rparameter, OVERLAP_THRESHOLD, seed_threshold));
00206         } else if (alg == D0ILCONE) {
00207           const double min_jet_Et = 6.0;
00208           _plugin.reset(new fastjet::D0RunIIConePlugin(rparameter, min_jet_Et));
00209         } else if (alg == JADE) {
00210           _plugin.reset(new fastjet::JadePlugin());
00211         } else if (alg == TRACKJET) {
00212           _plugin.reset(new fastjet::TrackJetPlugin(rparameter));
00213         }
00214         _jdef = fastjet::JetDefinition(_plugin.get());
00215       }
00216     }

void _init2 ( fastjet::JetAlgorithm  type,
fastjet::RecombinationScheme  recom,
double  rparameter 
) [inline, private]

Definition at line 218 of file FastJets.hh.

References FastJets::_jdef, and Projection::setName().

Referenced by FastJets::FastJets().

00219                                                                           {
00220       setName("FastJets");
00221       _jdef = fastjet::JetDefinition(type, rparameter, recom);
00222     }

void _init3 ( fastjet::JetDefinition::Plugin &  plugin  )  [inline, private]

Todo:
Should we be copying the plugin?

Definition at line 224 of file FastJets.hh.

References FastJets::_jdef, FastJets::_plugin, and Projection::setName().

Referenced by FastJets::FastJets().

00224                                                     {
00225       setName("FastJets");
00226       /// @todo Should we be copying the plugin?
00227       _plugin.reset(&plugin);
00228       _jdef = fastjet::JetDefinition(_plugin.get());
00229     }

Jets _jets ( double  ptmin = 0.0  )  const [virtual]

Get the jets (unordered).

Implements JetAlg.

Definition at line 134 of file FastJets.cc.

References FastJets::_pseudojetsToJets(), and FastJets::pseudoJets().

00134                                          {
00135     Jets rtn = _pseudojetsToJets(pseudoJets(ptmin));
00136     return rtn;
00137   }

Jets _pseudojetsToJets ( const PseudoJets pjets  )  const [private]

Definition at line 101 of file FastJets.cc.

References FastJets::_particles, Jet::addParticle(), and FastJets::clusterSeq().

Referenced by FastJets::_jets().

00101                                                                 {
00102     Jets rtn;
00103     foreach (const fastjet::PseudoJet& pj, pjets) {
00104       Jet j;
00105       assert(clusterSeq());
00106       const PseudoJets parts = clusterSeq()->constituents(pj);
00107       foreach (const fastjet::PseudoJet& p, parts) {
00108         map<int, Particle>::const_iterator found = _particles.find(p.user_index());
00109         assert(found != _particles.end());
00110         j.addParticle(found->second);
00111       }
00112       rtn.push_back(j);
00113     }
00114     return rtn;
00115   }

Projection& addPdgIdPair ( PdgId  beam1,
PdgId  beam2 
) [inline, inherited]

Add a colliding beam pair.

Definition at line 107 of file Projection.hh.

References Projection::_beamPairs.

Referenced by Projection::Projection().

00107                                                        {
00108       _beamPairs.insert(PdgIdPair(beam1, beam2));
00109       return *this;
00110     }

const PROJ& addProjection ( const PROJ &  proj,
const std::string &  name 
) [inline, protected, inherited]

Register a contained projection. The type of the argument is used to instantiate a new projection internally: this new object is applied to events rather than the argument object. Hence you are advised to only use locally-scoped Projection objects in your Projection and Analysis constructors, and to avoid polymorphism (e.g. handling ConcreteProjection via a pointer or reference to type Projection) since this will screw up the internal type management.

Definition at line 113 of file ProjectionApplier.hh.

References ProjectionApplier::_addProjection().

Referenced by ZFinder::_init(), WFinder::_init(), VetoedFinalState::addVetoOnThisFinalState(), BeamThrust::BeamThrust(), CDF_2009_S8057893::CDF_2009_S8057893::init(), CentralEtHCM::CentralEtHCM(), ChargedFinalState::ChargedFinalState(), ChargedLeptons::ChargedLeptons(), ClusteredPhotons::ClusteredPhotons(), DISFinalState::DISFinalState(), DISKinematics::DISKinematics(), DISLepton::DISLepton(), FinalState::FinalState(), FoxWolframMoments::FoxWolframMoments(), FParameter::FParameter(), HadronicFinalState::HadronicFinalState(), Hemispheres::Hemispheres(), IdentifiedFinalState::IdentifiedFinalState(), ZEUS_2001_S4815815::init(), UA5_1989_S1926373::init(), UA5_1988_S1867512::init(), UA5_1987_S1640666::init(), UA5_1986_S1583476::init(), UA5_1982_S875503::init(), UA1_1990_S2044935::init(), TASSO_1990_S2148048::init(), STAR_2009_UE_HELEN::init(), STAR_2008_S7993412::init(), STAR_2008_S7869363::init(), STAR_2006_S6870392::init(), STAR_2006_S6860818::init(), STAR_2006_S6500200::init(), SFM_1984_S1178091::init(), PDG_HADRON_MULTIPLICITIES_RATIOS::init(), PDG_HADRON_MULTIPLICITIES::init(), OPAL_2004_S6132243::init(), OPAL_2001_S4553896::init(), OPAL_1998_S3780481::init(), OPAL_1993_S2692198::init(), MC_ZZJETS::init(), MC_ZJETS::init(), MC_WWJETS::init(), MC_WPOL::init(), MC_WJETS::init(), MC_VH2BB::init(), MC_TTBAR::init(), MC_SUSY::init(), MC_PHOTONJETUE::init(), MC_PHOTONJETS::init(), MC_LEADINGJETS::init(), MC_JETS::init(), MC_HJETS::init(), MC_GENERIC::init(), MC_DIPHOTON::init(), MC_DIJET::init(), LHCB_2010_S8758301::init(), JADE_OPAL_2000_S4300807::init(), JADE_1998_S3612880::init(), H1_2000_S4129130::init(), H1_1995_S3167097::init(), H1_1994_S2919893::init(), ExampleAnalysis::init(), E735_1998_S3905616::init(), DELPHI_2003_WUD_03_11::init(), DELPHI_2002_069_CONF_603::init(), DELPHI_1996_S3430090::init(), DELPHI_1995_S3137023::init(), D0_2010_S8821313::init(), D0_2010_S8671338::init(), D0_2010_S8570965::init(), D0_2010_S8566488::init(), D0_2009_S8349509::init(), D0_2009_S8320160::init(), D0_2009_S8202443::init(), D0_2008_S7863608::init(), D0_2008_S7837160::init(), D0_2008_S7719523::init(), D0_2008_S7662670::init(), D0_2008_S7554427::init(), D0_2008_S6879055::init(), D0_2007_S7075677::init(), D0_2006_S6438750::init(), D0_2004_S5992206::init(), D0_2001_S4674421::init(), D0_2000_S4480767::init(), D0_1996_S3324664::init(), D0_1996_S3214044::init(), CMS_2011_S9120041::init(), CMS_2011_S9088458::init(), CMS_2011_S9086218::init(), CMS_2011_S8978280::init(), CMS_2011_S8968497::init(), CMS_2011_S8957746::init(), CMS_2011_S8950903::init(), CMS_2011_S8884919::init(), CMS_2010_S8656010::init(), CMS_2010_S8547297::init(), CDF_2010_S8591881_QCD::init(), CDF_2010_S8591881_DY::init(), CDF_2009_S8436959::init(), CDF_2009_S8383952::init(), CDF_2009_S8233977::init(), CDF_2009_NOTE_9936::init(), CDF_2008_S8095620::init(), CDF_2008_S8093652::init(), CDF_2008_S7828950::init(), CDF_2008_S7782535::init(), CDF_2008_S7541902::init(), CDF_2008_S7540469::init(), CDF_2008_NOTE_9351::init(), CDF_2008_LEADINGJETS::init(), CDF_2007_S7057202::init(), CDF_2006_S6653332::init(), CDF_2006_S6450792::init(), CDF_2005_S6217184::init(), CDF_2005_S6080774::init(), CDF_2004_S5839831::init(), CDF_2001_S4751469::init(), CDF_2001_S4563131::init(), CDF_2001_S4517016::init(), CDF_2000_S4266730::init(), CDF_2000_S4155203::init(), CDF_1998_S3618439::init(), CDF_1997_S3541940::init(), CDF_1996_S3418421::init(), CDF_1996_S3349578::init(), CDF_1996_S3108457::init(), CDF_1994_S2952106::init(), CDF_1993_S2742446::init(), CDF_1990_S2089246::init(), CDF_1988_S1865951::init(), BELLE_2006_S6265367::init(), ATLAS_2011_S9225137::init(), ATLAS_2011_S9212183::init(), ATLAS_2011_S9131140::init(), ATLAS_2011_S9128077::init(), ATLAS_2011_S9126244::init(), ATLAS_2011_S9120807::init(), ATLAS_2011_S9108483::init(), ATLAS_2011_S9041966::init(), ATLAS_2011_S9019561::init(), ATLAS_2011_S9002537::init(), ATLAS_2011_S8994773::init(), ATLAS_2011_S8983313::init(), ATLAS_2011_S8971293::init(), ATLAS_2011_S8924791::init(), ATLAS_2011_I925932::init(), ATLAS_2011_I919017::init(), ATLAS_2011_CONF_2011_098::init(), ATLAS_2011_CONF_2011_090::init(), ATLAS_2010_S8919674::init(), ATLAS_2010_S8918562::init(), ATLAS_2010_S8914702::init(), ATLAS_2010_S8894728::init(), ATLAS_2010_S8817804::init(), ATLAS_2010_S8591806::init(), ATLAS_2010_CONF_2010_049::init(), ALICE_2011_S8945144::init(), ALICE_2011_S8909580::init(), ALICE_2010_S8706239::init(), ALICE_2010_S8625980::init(), ALICE_2010_S8624100::init(), ALEPH_2004_S5765862::init(), ALEPH_1996_S3486095::init(), ALEPH_1996_S3196992::init(), ALEPH_1991_S2435284::init(), IsolationProjection< PROJ1, PROJ2, EST >::IsolationProjection(), JetAlg::JetAlg(), JetShape::JetShape(), LeadingParticlesFinalState::LeadingParticlesFinalState(), LeptonClusters::LeptonClusters(), LossyFinalState< ConstRandomFilter >::LossyFinalState(), MergedFinalState::MergedFinalState(), MissingMomentum::MissingMomentum(), Multiplicity::Multiplicity(), NeutralFinalState::NeutralFinalState(), NonHadronicFinalState::NonHadronicFinalState(), ParisiTensor::ParisiTensor(), Sphericity::Sphericity(), Spherocity::Spherocity(), SVertex::SVertex(), Thrust::Thrust(), TotalVisibleMomentum::TotalVisibleMomentum(), TriggerCDFRun0Run1::TriggerCDFRun0Run1(), TriggerCDFRun2::TriggerCDFRun2(), TriggerUA5::TriggerUA5(), VetoedFinalState::VetoedFinalState(), and VisibleFinalState::VisibleFinalState().

00113                                                                        {
00114       const Projection& reg = _addProjection(proj, name);
00115       const PROJ& rtn = dynamic_cast<const PROJ&>(reg);
00116       return rtn;
00117     }

const PROJ& applyProjection ( const Event evt,
const std::string &  name 
) const [inline, inherited]

Apply the named projection on event.

Definition at line 81 of file ProjectionApplier.hh.

References ProjectionApplier::_applyProjection().

00081                                                                                {
00082       return pcast<PROJ>(_applyProjection(evt, name));
00083     }

const PROJ& applyProjection ( const Event evt,
const Projection proj 
) const [inline, inherited]

Apply the supplied projection on event.

Definition at line 74 of file ProjectionApplier.hh.

References ProjectionApplier::_applyProjection().

00074                                                                                 {
00075       return pcast<PROJ>(_applyProjection(evt, proj));
00076     }

const PROJ& applyProjection ( const Event evt,
const PROJ &  proj 
) const [inline, inherited]

Apply the supplied projection on event.

Definition at line 67 of file ProjectionApplier.hh.

References ProjectionApplier::_applyProjection().

Referenced by DISFinalState::project().

00067                                                                           {
00068       return pcast<PROJ>(_applyProjection(evt, proj));
00069     }

const fastjet::AreaDefinition* areaDef (  )  const [inline]

Return the area definition (FastJet-specific). May be null.

Definition at line 154 of file FastJets.hh.

References FastJets::_adef.

00154                                                  {
00155       return _adef;
00156     }

const set< PdgIdPair > beamPairs (  )  const [virtual, inherited]

Return the BeamConstraints for this projection, not including recursion. Derived classes should ensure that all contained projections are registered in the _projections set for the beam constraint chaining to work.

Definition at line 39 of file Projection.cc.

References Projection::_beamPairs, Projection::beamPairs(), Projection::getLog(), ProjectionApplier::getProjections(), Rivet::intersection(), and Log::TRACE.

Referenced by Projection::beamPairs().

00039                                                    {
00040     set<PdgIdPair> ret = _beamPairs;
00041     set<ConstProjectionPtr> projs = getProjections();
00042     for (set<ConstProjectionPtr>::const_iterator ip = projs.begin(); ip != projs.end(); ++ip) {
00043       ConstProjectionPtr p = *ip;
00044       getLog() << Log::TRACE << "Proj addr = " << p << endl;
00045       if (p) ret = intersection(ret, p->beamPairs());
00046     }
00047     return ret;
00048   }

bool before ( const Projection p  )  const [inherited]

Determine whether this object should be ordered before the object p given as argument. If p is of a different class than this, the before() function of the corresponding type_info objects is used. Otherwise, if the objects are of the same class, the virtual compare(const Projection &) will be returned.

Definition at line 28 of file Projection.cc.

References Projection::compare().

Referenced by less< const Rivet::Projection * >::operator()().

00028                                                    {
00029     const std::type_info& thisid = typeid(*this);
00030     const std::type_info& otherid = typeid(p);
00031     if (thisid == otherid) {
00032       return compare(p) < 0;
00033     } else {
00034       return thisid.before(otherid);
00035     }
00036   }

void calc ( const ParticleVector ps  )  [virtual]

Do the calculation locally (no caching).

Implements JetAlg.

Definition at line 77 of file FastJets.cc.

References FastJets::_adef, FastJets::_cseq, FastJets::_jdef, FastJets::_particles, FourMomentum::E(), Particle::momentum(), MSG_DEBUG, FourMomentum::px(), FourMomentum::py(), and FourMomentum::pz().

Referenced by CDF_2008_S7540469::analyze(), and FastJets::project().

00077                                               {
00078     _particles.clear();
00079     vector<fastjet::PseudoJet> vecs;
00080     // Store 4 vector data about each particle into vecs
00081     int counter = 1;
00082     foreach (const Particle& p, ps) {
00083       const FourMomentum fv = p.momentum();
00084       fastjet::PseudoJet pJet(fv.px(), fv.py(), fv.pz(), fv.E());
00085       pJet.set_user_index(counter);
00086       vecs.push_back(pJet);
00087       _particles[counter] = p;
00088       ++counter;
00089     }
00090     MSG_DEBUG("Running FastJet ClusterSequence construction");
00091 
00092     // Choose CSeq as basic or area-calculating depending on whether _adef pointer is non-null.
00093     if (_adef == 0) {
00094       _cseq.reset(new fastjet::ClusterSequence(vecs, _jdef));
00095     } else {
00096       _cseq.reset(new fastjet::ClusterSequenceArea(vecs, _jdef, *_adef));
00097     }
00098   }

virtual const Projection* clone (  )  const [inline, virtual]

Clone on the heap.

Implements JetAlg.

Definition at line 88 of file FastJets.hh.

References FastJets::FastJets().

00088                                             {
00089       return new FastJets(*this);
00090     }

const fastjet::ClusterSequence* clusterSeq (  )  const [inline]
const fastjet::ClusterSequenceArea* clusterSeqArea (  )  const [inline]

Return the cluster sequence (FastJet-specific).

Todo:
Throw error if no area def? Or just blindly call dynamic_cast?

Definition at line 142 of file FastJets.hh.

References FastJets::_adef, and FastJets::_cseq.

00142                                                              {
00143       /// @todo Throw error if no area def? Or just blindly call dynamic_cast?
00144       if (_adef == 0) return (fastjet::ClusterSequenceArea*) 0;
00145       return dynamic_cast<fastjet::ClusterSequenceArea*>(_cseq.get());
00146     }

int compare ( const Projection p  )  const [protected, virtual]

Compare projections.

Implements JetAlg.

Definition at line 53 of file FastJets.cc.

References FastJets::_adef, FastJets::_jdef, JetAlg::_useInvisibles, Rivet::cmp(), and Projection::mkNamedPCmp().

00053                                                  {
00054     const FastJets& other = dynamic_cast<const FastJets&>(p);
00055     return \
00056       (_useInvisibles ? mkNamedPCmp(other, "FS") : mkNamedPCmp(other, "VFS")) ||
00057       cmp(_jdef.jet_algorithm(), other._jdef.jet_algorithm()) ||
00058       cmp(_jdef.recombination_scheme(), other._jdef.recombination_scheme()) ||
00059       cmp(_jdef.plugin(), other._jdef.plugin()) ||
00060       cmp(_jdef.R(), other._jdef.R()) ||
00061       cmp(_adef, other._adef);
00062   }

collection_type entities (  )  const [inline, inherited]

Template-usable interface common to FinalState.

Definition at line 174 of file JetAlg.hh.

References JetAlg::jets().

00174 { return jets(); }

fastjet::PseudoJet filterJet ( fastjet::PseudoJet  jet,
double &  stingy_R,
const double  def_R 
) const

Filter a jet a la PRL100,242001(2008). Based on code from G.Salam, A.Davison.

Definition at line 219 of file FastJets.cc.

References FastJets::clusterSeq().

00220                                                                                      {
00221     assert(clusterSeq());
00222 
00223     if (jet.E() <= 0.0 || clusterSeq()->constituents(jet).size() == 0) {
00224       return jet;
00225     }
00226     if (stingy_R == 0.0) {
00227       stingy_R = def_R;
00228     }
00229 
00230     stingy_R = def_R < stingy_R ? def_R : stingy_R;
00231     fastjet::JetDefinition stingy_jet_def(fastjet::cambridge_algorithm, stingy_R);
00232 
00233     //FlavourRecombiner recom;
00234     //stingy_jet_def.set_recombiner(&recom);
00235     fastjet::ClusterSequence scs(clusterSeq()->constituents(jet), stingy_jet_def);
00236     std::vector<fastjet::PseudoJet> stingy_jets = sorted_by_pt(scs.inclusive_jets());
00237 
00238     fastjet::PseudoJet reconst_jet(0.0, 0.0, 0.0, 0.0);
00239 
00240     for (unsigned isj = 0; isj < std::min(3U, (unsigned int) stingy_jets.size()); ++isj) {
00241       reconst_jet += stingy_jets[isj];
00242     }
00243     return reconst_jet;
00244   }

Log& getLog (  )  const [inline, inherited]

Get a Log object based on the getName() property of the calling projection object.

Reimplemented from ProjectionApplier.

Definition at line 114 of file Projection.hh.

References Projection::name().

Referenced by Projection::beamPairs(), InvMassFinalState::calc(), VetoedFinalState::project(), UnstableFinalState::project(), LossyFinalState< ConstRandomFilter >::project(), IsolationProjection< PROJ1, PROJ2, EST >::project(), InitialQuarks::project(), ChargedFinalState::project(), and TotalVisibleMomentum::TotalVisibleMomentum().

00114                         {
00115       string logname = "Rivet.Projection." + name();
00116       return Log::getLog(logname);
00117     }

const Projection& getProjection ( const std::string &  name  )  const [inline, inherited]

Get the named projection (non-templated, so returns as a reference to a Projection base class).

Definition at line 57 of file ProjectionApplier.hh.

References ProjectionHandler::getProjection(), and ProjectionApplier::getProjHandler().

00057                                                                  {
00058       return getProjHandler().getProjection(*this, name);
00059     }

const PROJ& getProjection ( const std::string &  name  )  const [inline, inherited]

Get the named projection, specifying return type via a template argument.

Definition at line 49 of file ProjectionApplier.hh.

References ProjectionHandler::getProjection(), and ProjectionApplier::getProjHandler().

Referenced by ProjectionApplier::_applyProjection(), Rivet::pcmp(), and Hemispheres::project().

00049                                                            {
00050       const Projection& p = getProjHandler().getProjection(*this, name);
00051       return pcast<PROJ>(p);
00052     }

std::set<ConstProjectionPtr> getProjections (  )  const [inline, inherited]

Get the contained projections, including recursion.

Definition at line 42 of file ProjectionApplier.hh.

References ProjectionHandler::DEEP, ProjectionHandler::getChildProjections(), and ProjectionApplier::getProjHandler().

Referenced by Projection::beamPairs().

00042                                                       {
00043       return getProjHandler().getChildProjections(*this, ProjectionHandler::DEEP);
00044     }

ProjectionHandler& getProjHandler (  )  const [inline, protected, inherited]
const fastjet::JetDefinition& jetDef (  )  const [inline]

Return the jet definition (FastJet-specific).

Definition at line 149 of file FastJets.hh.

References FastJets::_jdef.

00149                                                {
00150       return _jdef;
00151     }

Jets jets ( sorter,
double  ptmin,
double  ptmax,
double  rapmin,
double  rapmax,
RapScheme  rapscheme 
) const [inline, inherited]

Get the jets, ordered by supplied sorting function object, with optional cuts on $ p_\perp $ and rapidity.

Todo:
Introduce MomentumFilter objects for pT, ET, eta, y, etc. filtering, to avoid double-arg ambiguities

Definition at line 110 of file JetAlg.hh.

References JetAlg::jets().

00112                                          {
00113       Jets js = jets(ptmin, ptmax, rapmin, rapmax, rapscheme);
00114       if (sorter != 0) {
00115         std::sort(js.begin(), js.end(), sorter);
00116       }
00117       return js;
00118     }

virtual Jets jets ( double  ptmin = 0.0,
double  ptmax = MAXDOUBLE,
double  rapmin = -MAXDOUBLE,
double  rapmax = MAXDOUBLE,
RapScheme  rapscheme = PSEUDORAPIDITY 
) const [inline, virtual, inherited]

Get jets in no guaranteed order, with optional cuts on $ p_\perp $ and rapidity.

Todo:
Introduce MomentumFilter objects for pT, ET, eta, y, etc. filtering, to avoid double-arg ambiguities

Definition at line 91 of file JetAlg.hh.

References JetAlg::_jets(), FourVector::eta(), Rivet::GeV, Rivet::inRange(), Jet::momentum(), MSG_DEBUG, Rivet::PSEUDORAPIDITY, FourMomentum::pT(), FourMomentum::rapidity(), and Rivet::RAPIDITY.

Referenced by ZEUS_2001_S4815815::analyze(), D0_2008_S7662670::analyze(), CMS_2011_S9086218::analyze(), CDF_2008_S7540469::analyze(), JetAlg::entities(), JetAlg::jets(), JetAlg::jetsByE(), JetAlg::jetsByEt(), JetAlg::jetsByP(), and JetAlg::jetsByPt().

00093                                                                 {
00094       const Jets rawjets = _jets(ptmin);
00095       Jets rtn;
00096       MSG_DEBUG("Raw jet size (with pTmin cut = " << ptmin/GeV << "GeV) = " << rawjets.size());
00097       foreach (const Jet& j, rawjets) {
00098         const FourMomentum pj = j.momentum();
00099         if (!inRange(pj.pT(), ptmin, ptmax)) continue;
00100         if (rapscheme == PSEUDORAPIDITY && !inRange(pj.eta(), rapmin, rapmax)) continue;
00101         if (rapscheme == RAPIDITY && !inRange(pj.rapidity(), rapmin, rapmax)) continue;
00102         rtn += j;
00103       }
00104       return rtn;
00105     }

Jets jetsByE ( double  ptmin = 0.0,
double  ptmax = MAXDOUBLE,
double  rapmin = -MAXDOUBLE,
double  rapmax = MAXDOUBLE,
RapScheme  rapscheme = PSEUDORAPIDITY 
) const [inline, inherited]

Get the jets, ordered by $ E $, with optional cuts on $ p_\perp $ and rapidity.

Todo:
Introduce MomentumFilter objects for pT, ET, eta, y, etc. filtering, to avoid double-arg ambiguities

Definition at line 138 of file JetAlg.hh.

References Rivet::cmpJetsByE(), and JetAlg::jets().

00140                                                            {
00141       return jets(cmpJetsByE, ptmin, ptmax, rapmin, rapmax, rapscheme);
00142     }

Jets jetsByEt ( double  ptmin = 0.0,
double  ptmax = MAXDOUBLE,
double  rapmin = -MAXDOUBLE,
double  rapmax = MAXDOUBLE,
RapScheme  rapscheme = PSEUDORAPIDITY 
) const [inline, inherited]

Get the jets, ordered by $ E_T $, with optional cuts on $ p_\perp $ and rapidity.

Todo:
Introduce MomentumFilter objects for pT, ET, eta, y, etc. filtering, to avoid double-arg ambiguities

Definition at line 146 of file JetAlg.hh.

References Rivet::cmpJetsByEt(), and JetAlg::jets().

Referenced by CDF_2008_S7541902::analyze().

00148                                                             {
00149       return jets(cmpJetsByEt, ptmin, ptmax, rapmin, rapmax, rapscheme);
00150     }

Jets jetsByP ( double  ptmin = 0.0,
double  ptmax = MAXDOUBLE,
double  rapmin = -MAXDOUBLE,
double  rapmax = MAXDOUBLE,
RapScheme  rapscheme = PSEUDORAPIDITY 
) const [inline, inherited]

Get the jets, ordered by $ |p| $, with optional cuts on $ p_\perp $ and rapidity.

Todo:
Introduce MomentumFilter objects for pT, ET, eta, y, etc. filtering, to avoid double-arg ambiguities

Definition at line 130 of file JetAlg.hh.

References Rivet::cmpJetsByP(), and JetAlg::jets().

00132                                                            {
00133       return jets(cmpJetsByP, ptmin, ptmax, rapmin, rapmax, rapscheme);
00134     }

Jets jetsByPt ( double  ptmin = 0.0,
double  ptmax = MAXDOUBLE,
double  rapmin = -MAXDOUBLE,
double  rapmax = MAXDOUBLE,
RapScheme  rapscheme = PSEUDORAPIDITY 
) const [inline, inherited]
Cmp< Projection > mkNamedPCmp ( const Projection otherparent,
const std::string &  pname 
) const [protected, inherited]
Cmp< Projection > mkPCmp ( const Projection otherparent,
const std::string &  pname 
) const [protected, inherited]

Shortcut to make a named Cmp<Projection> comparison with the *this object automatically passed as one of the parent projections.

Definition at line 57 of file Projection.cc.

References Rivet::pcmp().

00058                                                                 {
00059     return pcmp(*this, otherparent, pname);
00060   }

virtual std::string name (  )  const [inline, virtual, inherited]
size_t numJets ( double  ptmin = 0.0  )  const

Number of jets above the $ p_\perp $ cut.

Definition at line 125 of file FastJets.cc.

References FastJets::_cseq.

Referenced by FastJets::size().

00125                                              {
00126     if (_cseq.get() != 0) {
00127       return _cseq->inclusive_jets(ptmin).size();
00128     } else {
00129       return 0;
00130     }
00131   }

void project ( const Event e  )  [protected, virtual]

Perform the projection on the Event.

Implements JetAlg.

Definition at line 66 of file FastJets.cc.

References JetAlg::_useInvisibles, FastJets::calc(), and Rivet::particles().

00066                                        {
00067     ParticleVector particles;
00068     if (_useInvisibles) {
00069       particles = applyProjection<FinalState>(e, "FS").particles();
00070     } else {
00071       particles = applyProjection<FinalState>(e, "VFS").particles();
00072     }
00073     calc(particles);
00074   }

PseudoJets pseudoJets ( double  ptmin = 0.0  )  const

Get the pseudo jets (unordered).

Definition at line 155 of file FastJets.cc.

References FastJets::_cseq.

Referenced by FastJets::_jets(), FastJets::pseudoJetsByE(), FastJets::pseudoJetsByPt(), and FastJets::pseudoJetsByRapidity().

00155                                                     {
00156     if (_cseq.get() != 0) {
00157       return _cseq->inclusive_jets(ptmin);
00158     } else {
00159       return PseudoJets();
00160     }
00161   }

PseudoJets pseudoJetsByE ( double  ptmin = 0.0  )  const [inline]

Get the pseudo jets, ordered by $ E $.

Definition at line 127 of file FastJets.hh.

References FastJets::pseudoJets().

00127                                                        {
00128       return sorted_by_E(pseudoJets(ptmin));
00129     }

PseudoJets pseudoJetsByPt ( double  ptmin = 0.0  )  const [inline]

Get the pseudo jets, ordered by $ p_T $.

Definition at line 122 of file FastJets.hh.

References FastJets::pseudoJets().

Referenced by CDF_2008_S8095620::analyze(), and CDF_2006_S6653332::analyze().

00122                                                         {
00123       return sorted_by_pt(pseudoJets(ptmin));
00124     }

PseudoJets pseudoJetsByRapidity ( double  ptmin = 0.0  )  const [inline]

Get the pseudo jets, ordered by rapidity.

Definition at line 132 of file FastJets.hh.

References FastJets::pseudoJets().

00132                                                               {
00133       return sorted_by_rapidity(pseudoJets(ptmin));
00134     }

void reset (  )  [virtual]

Reset the projection. Jet def, etc. are unchanged.

Todo:
_cseq = fastjet::ClusterSequence();

Implements JetAlg.

Definition at line 118 of file FastJets.cc.

References FastJets::_particles, and FastJets::_yscales.

00118                        {
00119     _yscales.clear();
00120     _particles.clear();
00121     /// @todo _cseq = fastjet::ClusterSequence();
00122   }

void setName ( const std::string &  name  )  [inline, inherited]

Used by derived classes to set their name.

Definition at line 120 of file Projection.hh.

References Projection::_name.

Referenced by ZFinder::_init(), WFinder::_init(), FastJets::_init1(), FastJets::_init2(), FastJets::_init3(), Beam::Beam(), BeamThrust::BeamThrust(), CentralEtHCM::CentralEtHCM(), ChargedFinalState::ChargedFinalState(), ChargedLeptons::ChargedLeptons(), ClusteredPhotons::ClusteredPhotons(), ConstLossyFinalState::ConstLossyFinalState(), DISFinalState::DISFinalState(), DISKinematics::DISKinematics(), DISLepton::DISLepton(), FinalState::FinalState(), FoxWolframMoments::FoxWolframMoments(), FParameter::FParameter(), HadronicFinalState::HadronicFinalState(), Hemispheres::Hemispheres(), IdentifiedFinalState::IdentifiedFinalState(), InitialQuarks::InitialQuarks(), IsolationProjection< PROJ1, PROJ2, EST >::IsolationProjection(), JetAlg::JetAlg(), JetShape::JetShape(), LeadingParticlesFinalState::LeadingParticlesFinalState(), LeptonClusters::LeptonClusters(), LossyFinalState< ConstRandomFilter >::LossyFinalState(), MergedFinalState::MergedFinalState(), MissingMomentum::MissingMomentum(), Multiplicity::Multiplicity(), NeutralFinalState::NeutralFinalState(), NonHadronicFinalState::NonHadronicFinalState(), ParisiTensor::ParisiTensor(), PVertex::PVertex(), Sphericity::Sphericity(), Spherocity::Spherocity(), SVertex::SVertex(), Thrust::Thrust(), TotalVisibleMomentum::TotalVisibleMomentum(), TriggerCDFRun0Run1::TriggerCDFRun0Run1(), TriggerCDFRun2::TriggerCDFRun2(), TriggerUA5::TriggerUA5(), UnstableFinalState::UnstableFinalState(), VetoedFinalState::VetoedFinalState(), and VisibleFinalState::VisibleFinalState().

00120                                         {
00121       _name = name;
00122     }

size_t size (  )  const [inline, virtual]

Number of jets.

Implements JetAlg.

Definition at line 111 of file FastJets.hh.

References FastJets::numJets().

Referenced by CDF_2008_S8095620::analyze(), and CDF_2006_S6653332::analyze().

00111                         {
00112       return numJets();
00113     }

fastjet::PseudoJet splitJet ( fastjet::PseudoJet  jet,
double &  last_R 
) const

Split a jet a la PRL100,242001(2008). Based on code from G.Salam, A.Davison.

Definition at line 180 of file FastJets.cc.

References FastJets::_cseq, FastJets::_jdef, FastJets::clusterSeq(), MSG_DEBUG, and Rivet::split().

00180                                                                                 {
00181     // Sanity cuts
00182     if (jet.E() <= 0 || _cseq->constituents(jet).size() <= 1) {
00183       return jet;
00184     }
00185 
00186     // Build a new cluster sequence just using the consituents of this jet.
00187     assert(clusterSeq());
00188     fastjet::ClusterSequence cs(clusterSeq()->constituents(jet), _jdef);
00189 
00190     // Get the jet back again
00191     fastjet::PseudoJet remadeJet = cs.inclusive_jets()[0];
00192     MSG_DEBUG("Jet2:" << remadeJet.m() << "," << remadeJet.e());
00193 
00194     fastjet::PseudoJet parent1, parent2;
00195     fastjet::PseudoJet split(0.0, 0.0, 0.0, 0.0);
00196     while (cs.has_parents(remadeJet, parent1, parent2)) {
00197       MSG_DEBUG("Parents:" << parent1.m() << "," << parent2.m());
00198       if (parent1.m2() < parent2.m2()) {
00199         fastjet::PseudoJet tmp;
00200         tmp = parent1; parent1 = parent2; parent2 = tmp;
00201       }
00202 
00203       double ktdist = parent1.kt_distance(parent2);
00204       double rtycut2 = 0.3*0.3;
00205       if (parent1.m() < ((2.0*remadeJet.m())/3.0) && ktdist > rtycut2*remadeJet.m2()) {
00206         break;
00207       } else {
00208         remadeJet = parent1;
00209       }
00210     }
00211 
00212     last_R = 0.5 * sqrt(parent1.squared_distance(parent2));
00213     split.reset(remadeJet.px(), remadeJet.py(), remadeJet.pz(), remadeJet.E());
00214     return split;
00215   }

void useInvisibles ( bool  useinvis = true  )  [inline, inherited]

Include invisible particles in jet construction. The default behaviour is that jets are only constructed from visible (i.e. charged under an SM gauge group) particles. Some jet studies, including those from ATLAS, use a definition in which neutrinos from hadron decays are included (via MC correction) in the experimental jet definition. Setting this flag to true avoids the automatic restriction to a VisibleFinalState.

Definition at line 85 of file JetAlg.hh.

References JetAlg::_useInvisibles.

Referenced by CDF_2008_S7782535::init(), CDF_2005_S6217184::init(), ATLAS_2011_S9128077::init(), ATLAS_2011_S8924791::init(), and ALEPH_2004_S5765862::init().

00085                                            {
00086       _useInvisibles = useinvis;
00087     }

void useJetArea ( fastjet::AreaDefinition *  adef  )  [inline]

Use provided jet area definition.

Warning:
adef is NOT copied, the user must ensure that it remains valid! Provide an adef null pointer to re-disable jet area calculation

Definition at line 103 of file FastJets.hh.

References FastJets::_adef.

Referenced by ATLAS_2011_S9120807::init(), and ATLAS_2010_S8914702::init().

00103                                                  {
00104       _adef = adef;
00105     }

vector< double > ySubJet ( const fastjet::PseudoJet &  jet  )  const

Get the subjet splitting variables for the given jet.

Definition at line 164 of file FastJets.cc.

References FastJets::_jdef, FastJets::_yscales, and FastJets::clusterSeq().

00164                                                                     {
00165     assert(clusterSeq());
00166     fastjet::ClusterSequence subjet_cseq(clusterSeq()->constituents(jet), _jdef);
00167     vector<double> yMergeVals;
00168     for (int i = 1; i < 4; ++i) {
00169       // Multiply the dmerge value by R^2 so that it corresponds to a
00170       // relative k_T (fastjet has 1/R^2 in the d_ij distance by default)
00171       const double ktmerge = subjet_cseq.exclusive_dmerge(i) * _jdef.R()*_jdef.R();
00172       yMergeVals.push_back(ktmerge/jet.perp2());
00173     }
00174     _yscales.insert(make_pair( jet.cluster_hist_index(), yMergeVals ));
00175     return yMergeVals;
00176   }


Friends And Related Function Documentation

friend class Cmp< Projection > [friend, inherited]

The Cmp specialization for Projection is a friend.

Definition at line 36 of file Projection.hh.

friend class Event [friend, inherited]

Event is a friend.

Definition at line 33 of file Projection.hh.


Member Data Documentation

fastjet::AreaDefinition* _adef [private]

Pointer to user-handled area definition.

Definition at line 251 of file FastJets.hh.

Referenced by FastJets::areaDef(), FastJets::calc(), FastJets::clusterSeqArea(), FastJets::compare(), and FastJets::useJetArea().

bool _allowProjReg [protected, inherited]

Flag to forbid projection registration in analyses until the init phase.

Definition at line 140 of file ProjectionApplier.hh.

Referenced by ProjectionApplier::_addProjection(), and Analysis::Analysis().

shared_ptr<fastjet::ClusterSequence> _cseq [private]
fastjet::JetDefinition _jdef [private]
map<int, Particle> _particles [private]

set of particles sorted by their PT2

Definition at line 264 of file FastJets.hh.

Referenced by FastJets::_pseudojetsToJets(), FastJets::calc(), and FastJets::reset().

shared_ptr<fastjet::JetDefinition::Plugin> _plugin [private]

FastJet external plugin.

Definition at line 257 of file FastJets.hh.

Referenced by FastJets::_init1(), and FastJets::_init3().

bool _useInvisibles [protected, inherited]

Flag to determine whether or not the VFS wrapper is to be used.

Definition at line 192 of file JetAlg.hh.

Referenced by FastJets::compare(), FastJets::project(), and JetAlg::useInvisibles().

map<int, vector<double> > _yscales [mutable, private]

Map of vectors of y scales. This is mutable so we can use caching/lazy evaluation.

Definition at line 260 of file FastJets.hh.

Referenced by FastJets::reset(), and FastJets::ySubJet().


The documentation for this class was generated from the following files: