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JHTopTagger.hh
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#ifndef __FASTJET_JH_TOP_TAGGER_HH__
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#define __FASTJET_JH_TOP_TAGGER_HH__
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//FJSTARTHEADER
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// $Id$
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//
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// Copyright (c) 2005-2026, Matteo Cacciari, Gavin P. Salam and Gregory Soyez
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//
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//----------------------------------------------------------------------
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// This file is part of FastJet.
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//
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// FastJet is free software; you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation; either version 2 of the License, or
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// (at your option) any later version.
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//
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// The algorithms that underlie FastJet have required considerable
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// development. They are described in the original FastJet paper,
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// hep-ph/0512210 and in the manual, arXiv:1111.6097. If you use
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// FastJet as part of work towards a scientific publication, please
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// quote the version you use and include a citation to the manual and
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// optionally also to hep-ph/0512210.
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//
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// FastJet is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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//
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// You should have received a copy of the GNU General Public License
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// along with FastJet. If not, see <http://www.gnu.org/licenses/>.
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//----------------------------------------------------------------------
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//FJENDHEADER
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#include "fastjet/tools/TopTaggerBase.hh"
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#include "fastjet/CompositeJetStructure.hh"
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#include "fastjet/LimitedWarning.hh"
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FASTJET_BEGIN_NAMESPACE
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class
JHTopTagger;
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class
JHTopTaggerStructure;
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//----------------------------------------------------------------------
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/// @ingroup tools_taggers
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/// \class JHTopTagger
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/// Class that helps perform boosted top tagging using the "Johns Hopkins"
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/// method from arXiv:0806.0848 (Kaplan, Rehermann, Schwartz
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/// and Tweedie)
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///
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///The tagger proceeds as follows:
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/// - start from a jet J obtained with the Cambridge/Aachen algorithm
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/// - undo the last iteration j -> j_1,j_2 (with pt_1>pt_2) until the
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/// two subjets satisfy pt_1 > delta_p pt_J (with pt_J the pt of
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/// the original jet) and |y_1 - y_2| + |phi_1 - phi_2| > delta_r.
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/// - if one of these criteria is not satisfied, carry on the
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/// procedure with j_1 (discarding j_2)
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/// - for each of the subjets found, repeat the procedure. If some
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/// new substructure is found, keep these 2 new subjets, otherwise
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/// keep the original subjet (found during the first iteration)
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/// - at this stage, one has at most 4 subjets. If one has less than
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/// 3, the tagger has failed.
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/// - reconstruct the W from the 2 subjets with a mass closest to the
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/// W mass
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/// - impose that the W helicity angle be less than a threshold
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/// cos_theta_W_max.
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///
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/// \section input Input conditions
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///
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/// - the original jet must have an associated (and valid)
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/// ClusterSequence
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/// - the tagger is designed to work with jets formed by the
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/// Cambridge/Aachen (C/A) algorithm; if a non-C/A jet is passed to
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/// the tagger, a warning will be issued
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///
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/// \section Example
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///
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/// A JHTopTagger can be used as follows:
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///
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/// \code
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/// double delta_p = 0.10; // subjets must carry at least this fraction of the original jet's p_t
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/// double delta_r = 0.19; // subjets must be separated by at least this Manhattan distance
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/// double cos_theta_W_max = 0.7; // the maximal allowed value of the W helicity angle
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/// JHTopTagger top_tagger(delta_p, delta_r, cos_theta_W_max);
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/// // indicate the acceptable range of top, W masses (default: no limits)
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/// top_tagger.set_top_selector(SelectorMassRange(150,200));
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/// top_tagger.set_W_selector (SelectorMassRange( 65, 95));
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/// // now try and tag a jet
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/// PseudoJet top_candidate = top_tagger(jet); // jet should come from a Cambridge/Aachen clustering
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/// if (top_candidate != 0) { // successful tagging
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/// double top_mass = top_candidate.m();
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/// double W_mass = top_candidate.structure_of<JHTopTagger>().W().m();
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/// }
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/// \endcode
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///
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/// The full set of information available from the structure_of<JHTopTagger>()
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/// call is
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///
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/// - PseudoJet W() : the W subjet of the top candidate
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/// - PseudoJet non_W(): non-W subjet(s) of the top candidate (i.e. the b)
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/// - double cos_theta_W(): the W helicity angle
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/// - PseudoJet W1(): the harder of the two prongs of the W
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/// - PseudoJet W2(): the softer of the two prongs of the W
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///
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/// The structure of the top_candidate can also be accessed through its
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/// pieces() function:
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///
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/// - top_candidate.pieces()[0]: W
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/// - top_candidate.pieces()[1]: non_W
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///
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/// The W itself has two pieces (corresponding to W1, W2).
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///
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/// The existence of the first two of the structural calls (W(),
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/// non_W()) and the fact that the top is made of two pieces (W,
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/// non_W) are features that should be common to all taggers derived
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/// from TopTaggerBase.
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///
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/// See also \subpage Example13 for a full usage example.
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///
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class
JHTopTagger
:
public
TopTaggerBase {
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public
:
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/// default ctor
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/// The parameters are the following:
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/// \param delta_p fractional pt cut imposed on the subjets
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/// (computed as a fraction of the original jet)
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/// \param delta_r minimal distance between 2 subjets
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/// (computed as |y1-y2|+|phi1-phi2|)
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/// \param cos_theta_W_max the maximal value for the polarisation
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/// angle of the W
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/// \param mW the W mass
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///
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/// The default values of all these parameters are taken from
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/// arXiv:0806:0848
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JHTopTagger
(
const
double
delta_p=0.10,
const
double
delta_r=0.19,
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double
cos_theta_W_max=0.7,
double
mW=80.4)
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: _delta_p(delta_p), _delta_r(delta_r),
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_cos_theta_W_max(cos_theta_W_max), _mW(mW){};
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/// returns a textual description of the tagger
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virtual
std::string description()
const
;
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/// runs the tagger on the given jet and
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/// returns the tagged PseudoJet if successful, or a PseudoJet==0 otherwise
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/// (standard access is through operator()).
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/// \param jet the PseudoJet to tag
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virtual
PseudoJet
result(
const
PseudoJet
& jet)
const
;
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// the type of the associated structure
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typedef
JHTopTaggerStructure
StructureType;
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protected
:
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/// runs the Johns Hopkins decomposition procedure
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std::vector<PseudoJet> _split_once(
const
PseudoJet
& jet_to_split,
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const
PseudoJet
& reference_jet)
const
;
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double
_delta_p, _delta_r, _cos_theta_W_max, _mW;
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static
LimitedWarning
_warnings_nonca;
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};
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//------------------------------------------------------------------------
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/// @ingroup tools_taggers
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/// \class JHTopTaggerStructure
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/// the structure returned by the JHTopTagger transformer.
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///
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/// See the JHTopTagger class description for the details of what
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/// is inside this structure
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///
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class
JHTopTaggerStructure
:
public
CompositeJetStructure
,
public
TopTaggerBaseStructure
{
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public
:
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/// ctor with pieces initialisation
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JHTopTaggerStructure
(std::vector<PseudoJet> pieces_in,
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const
JetDefinition::Recombiner
*recombiner = 0) :
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CompositeJetStructure
(pieces_in, recombiner),
_cos_theta_w
(0.0){}
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/// returns the W subjet
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inline
const
PseudoJet
&
W
()
const
{
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return
_pieces
[0];
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}
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/// returns the first W subjet (the harder)
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inline
PseudoJet
W1
()
const
{
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assert(
W
().
pieces
().size()>0);
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return
W
().pieces()[0];
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}
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/// returns the second W subjet
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inline
PseudoJet
W2
()
const
{
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assert(
W
().
pieces
().size()>1);
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return
W
().pieces()[1];
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}
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/// returns the non-W subjet
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/// It will have 1 or 2 pieces depending on whether the tagger has
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/// found 3 or 4 pieces
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inline
const
PseudoJet
&
non_W
()
const
{
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return
_pieces
[1];
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}
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/// returns the W helicity angle
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inline
double
cos_theta_W
()
const
{
return
_cos_theta_w
;}
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// /// returns the original jet (before tagging)
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// const PseudoJet & original() const {return _original_jet;}
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protected
:
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double
_cos_theta_w
;
///< the W helicity angle
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//PseudoJet _W; ///< the tagged W
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//PseudoJet _non_W; ///< the remaining pieces
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// PseudoJet _original_jet; ///< the original jet (before tagging)
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// allow the tagger to set these
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friend
class
JHTopTagger;
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};
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FASTJET_END_NAMESPACE
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#endif
// __FASTJET_JH_TOP_TAGGER_HH__
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fastjet::CompositeJetStructure::_pieces
std::vector< PseudoJet > _pieces
the pieces building the jet
Definition
CompositeJetStructure.hh:140
fastjet::CompositeJetStructure::pieces
virtual std::vector< PseudoJet > pieces(const PseudoJet &jet) const override
returns the pieces
Definition
CompositeJetStructure.cc:120
fastjet::CompositeJetStructure::CompositeJetStructure
CompositeJetStructure()
default ctor
Definition
CompositeJetStructure.hh:54
fastjet::JHTopTaggerStructure
the structure returned by the JHTopTagger transformer.
Definition
JHTopTagger.hh:169
fastjet::JHTopTaggerStructure::non_W
const PseudoJet & non_W() const
returns the non-W subjet It will have 1 or 2 pieces depending on whether the tagger has found 3 or 4 ...
Definition
JHTopTagger.hh:196
fastjet::JHTopTaggerStructure::W2
PseudoJet W2() const
returns the second W subjet
Definition
JHTopTagger.hh:188
fastjet::JHTopTaggerStructure::cos_theta_W
double cos_theta_W() const
returns the W helicity angle
Definition
JHTopTagger.hh:201
fastjet::JHTopTaggerStructure::W
const PseudoJet & W() const
returns the W subjet
Definition
JHTopTagger.hh:177
fastjet::JHTopTaggerStructure::JHTopTaggerStructure
JHTopTaggerStructure(std::vector< PseudoJet > pieces_in, const JetDefinition::Recombiner *recombiner=0)
ctor with pieces initialisation
Definition
JHTopTagger.hh:172
fastjet::JHTopTaggerStructure::_cos_theta_w
double _cos_theta_w
the W helicity angle
Definition
JHTopTagger.hh:208
fastjet::JHTopTaggerStructure::W1
PseudoJet W1() const
returns the first W subjet (the harder)
Definition
JHTopTagger.hh:182
fastjet::JHTopTagger::JHTopTagger
JHTopTagger(const double delta_p=0.10, const double delta_r=0.19, double cos_theta_W_max=0.7, double mW=80.4)
default ctor The parameters are the following:
Definition
JHTopTagger.hh:134
fastjet::JetDefinition::Recombiner
An abstract base class that will provide the recombination scheme facilities and/or allow a user to e...
Definition
JetDefinition.hh:498
fastjet::LimitedWarning
class to provide facilities for giving warnings up to some maximum number of times and to provide glo...
Definition
LimitedWarning.hh:54
fastjet::PseudoJet
Class to contain pseudojets, including minimal information of use to jet-clustering routines.
Definition
PseudoJet.hh:68
fastjet::TopTaggerBaseStructure
class that specifies the structure common to all top taggers
Definition
TopTaggerBase.hh:96
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