Searching for t-bar t Resonances at the Large Hadron Collider
arXiv:0803.1160 · doi:10.1103/PhysRevD.77.114001
Abstract
Many new physics models predict resonances with masses in the TeV range which decay into a pair of top quarks. With its large cross section, t-bar t production at the Large Hadron Collider (LHC) offers an excellent opportunity to search for such particles. We present a detailed study of the discovery potential of the CERN Large Hadron Collider for Kaluza-Klein (KK) excitations of the gluon in bulk Randall-Sundrum (RS) models in the t-bar t -> ell^+/- nu b-bar bq-bar q' (ell=e, mu) final state. We utilize final states with one or two tagged b-quarks, and two, three or four jets (including b-jets). Our calculations take into account the finite resolution of detectors, the energy loss due to b-quark decays, the expected reduced b-tagging efficiency at large t-bar t invariant masses, and include the background originating from Wb-bar b+jets, (Wb+W-bar b)+jets, W+jets, and single top + jets production. We derive semi-realistic 5 sigma discovery limits for nine different KK gluon scenarios, and compare them with those for KK gravitons, and a Z_H boson in the Littlest Higgs model. We also analyze the capabilities of the LHC experiments to differentiate between individual KK gluon models and measure the couplings of KK gluons to quarks. We find that, for the parameters and models chosen, KK gluons with masses up to about 4 TeV can be discovered at the LHC. The ability of the LHC to discriminate between different bulk RS models, and to measure the couplings of the KK gluons is found to be highly model dependent.
revtex3, 27 pages, 5 tables, 6 figures
References in corpus (21)
- PYTHIA 6.4 Physics and Manual
- Implications of CTEQ global analysis for collider observables
- A custodial symmetry for Zbb
- Light custodians in natural composite Higgs models
- Warped Gravitons at the LHC and Beyond
- The Bulk RS KK-gluon at the LHC
- Light Kaluza-Klein States in Randall-Sundrum Models with Custodial SU(2)
- LHC Signals for Warped Electroweak Neutral Gauge Bosons
- Searching for the Kaluza-Klein Graviton in Bulk RS Models
- Top Quark Pairs at High Invariant Mass - A Model-Independent Discriminator of New Physics at the LHC
- Kaluza--Klein excitations of gauge bosons at the LHC
- Resolving the A_{FB}^b puzzle in an extra dimensional model with an extended gauge structure
- Kaluza-Klein Gluons as a Diagnostic of Warped Models
- Top production at the Tevatron/LHC and nonstandard, strongly interacting spin one particles
- High p_T Top Quarks at the Large Hadron Collider
- Search for RS gravitons via decays
- Top quark spin correlations in the Randall-Sundrum model at the CERN Large Hadron Collider
- Torsion Phenomenology at the LHC
- Direct search limits on the Littlest Higgs model
- Collider Implications of Multiple Non-Universal Extra Dimensions
- Decays of the Littlest Higgs Z_H and the Onset of Strong Dynamics
Cited by in corpus (18)
- Top-tagging: A Method for Identifying Boosted Hadronic Tops
- Strategies to Identify Boosted Tops
- Top pair invariant mass distribution: a window on new physics
- Higgs Mediated FCNC's in Warped Extra Dimensions
- Top Jets at the LHC
- Flavor Violation Tests of Warped/Composite SM in the Two-Site Approach
- LHC Signals for Warped Electroweak Charged Gauge Bosons
- Quantifying the performance of jet definitions for kinematic reconstruction at the LHC
- Top-antitop and Top-top Resonances in the Dilepton Channel at the CERN LHC
- Next-to-leading order QCD corrections to a heavy resonance production and decay into top quark pair at the LHC
- Non-Global Logarithms in Filtered Jet Algorithms
- Identification of Extra Neutral Gauge Bosons at the LHC Using b- and t-Quarks
- Unravelling an Extra Neutral Gauge Boson at the LHC using Third Generation Fermions
- Identifying Multi-Top Events from Gluino Decay at the LHC
- Top quark physics at the LHC
- Discovery and Identification of Extra Neutral Gauge Bosons at the LHC
- Top quark theory review for the Tevatron, LHC, and ILC
- Perturbative QCD for the LHC