New approach to identifying boosted hadronically-decaying particle using jet substructure in its center-of-mass frame
arXiv:1112.2567 · doi:10.1103/PhysRevD.85.034007
Abstract
In this paper we introduce a new approach to study jet substructure in the center-of-mass frame of the jet. We demonstrate that it can be used to discriminate the boosted heavy particles from the QCD jets and the method is complimentary to the existing other jet substructure algorithms. Applications to searches for hadronically decaying W/Z+jets and heavy resonance that decays to a WW final state are also discussed.
Published in Physical Review D 85, 034007 (2012)
References in corpus (16)
- PYTHIA 6.4 Physics and Manual
- Jet substructure as a new Higgs search channel at the LHC
- Top-tagging: A Method for Identifying Boosted Hadronic Tops
- Boosted objects: a probe of beyond the Standard Model physics
- Techniques for improved heavy particle searches with jet substructure
- Strategies to Identify Boosted Tops
- Efficient Identification of Boosted Semileptonic Top Quarks at the LHC
- Top Jets at the LHC
- Template Overlap Method for Massive Jets
- W-jet Tagging: Optimizing the Identification of Boosted Hadronically-Decaying W Bosons
- Discovering Higgs Bosons of the MSSM using Jet Substructure
- Search for the Elusive Higgs Boson Using Jet Structure at LHC
- Boosting Higgs discovery - the forgotten channel
- Jet Substructure and the Search for Neutral Spin-One Resonances in Electroweak Boson Channels
- Ditau-Jet Tagging and Boosted Higgses from a Multi-TeV Resonance
- New approach for jet-shape identification of TeV-scale particles at the LHC
Cited by in corpus (28)
- CheckMATE 2: From the model to the limit
- Search for squarks and gluinos in final states with jets and missing transverse momentum using 36 fb of =13 TeV collision data with the ATLAS detector
- Performance of jet substructure techniques for large-R jets in proton-proton collisions at sqrt(s) = 7 TeV using the ATLAS detector
- Performance of top-quark and -boson tagging with ATLAS in Run 2 of the LHC
- Search for squarks and gluinos in final states with jets and missing transverse momentum at 13 TeV with the ATLAS detector
- Identification of boosted, hadronically decaying W bosons and comparisons with ATLAS data taken at TeV
- Search for squarks and gluinos in events with an isolated lepton, jets, and missing transverse momentum at = 13 TeV with the ATLAS detector
- Simplified Phenomenology for Colored Dark Sectors
- Search for gluinos in events with an isolated lepton, jets and missing transverse momentum at = 13 TeV with the ATLAS detector
- Identification of boosted Higgs bosons decaying into -quark pairs with the ATLAS detector at 13 TeV
- Cornering pseudoscalar-mediated dark matter with the LHC and cosmology
- Search for squarks and gluinos in final states with one isolated lepton, jets, and missing transverse momentum at TeV with the ATLAS detector
- Measurement of the cross-section of high transverse momentum vector bosons reconstructed as single jets and studies of jet substructure in collisions at = 7 TeV with the ATLAS detector
- Search for heavy resonances decaying to a photon and a hadronically decaying boson in collisions at with the ATLAS detector
- Three-Prong Distribution of Massive Narrow QCD Jets
- Identification of High-Momentum Top Quarks, Higgs Bosons, and W and Z Bosons Using Boosted Event Shapes
- Enhancing searches for resonances with machine learning and moment decomposition
- Searching for Metastable Particles with Sub-Millimeter Displaced Vertices at Hadron Colliders
- Using Jet Substructure at the LHC to Search for the Light Higgs Bosons of the CP-Violating MSSM
- Accuracy versus precision in boosted top tagging with the ATLAS detector
- First interpretation of 13 TeV supersymmetry searches in the pMSSM
- The left-right supersymmetric option at a high-energy upgrade of the LHC
- Search for heavy resonances decaying into a photon and a hadronically decaying Higgs boson in collisions at TeV with the ATLAS detector
- Identifying boosted hadronically decaying top quark using jet substructure in its center-of-mass frame
- Identifying the b quark inside a boosted hadronically decaying top quark using jet substructure in its center-of-mass frame
- Identification of a bottom quark-antiquark pair in a single jet with high transverse momentum and its application
- Investigating the Violation of Charge Parity Symmetry Through Top Quark Chromo-Electric Dipole Moments by Using Machine Learning Techniques
- Reconstruction and identification of with high transverse momentum in the full hadronic final state