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      Sensitivity to new high-mass states decaying to ttbar at a 100 TeV collider

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          Abstract

          We discuss the sensitivity of a 100 TeV pp collider to heavy particles decaying to top-antitop final states. This center-of-mass energy, together with an integrated luminosity of 10 ab-1, can produce heavy particles in the mass range of several tens of teraelectronvolts (TeV). A Monte Carlo study has been performed using boosted-top techniques to reduce QCD background for the reconstruction of heavy particles with masses in the range of 8-20 TeV, and various widths. In particular, we have studied two models that predict heavy states, a model with an extra gauge boson (Zprime) and with a Kaluza-Klein (KK) excitation of the gluon (gKK). We estimate the sensitive values of \(\sigma \times\)Br of about 2 (4) fb for Zprime (gKK), with a corresponding mass reach of 13 (20) TeV.

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          Longitudinally-invariant k⊥-clustering algorithms for hadron-hadron collisions

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            Author and article information

            Journal
            2014-12-18
            2015-01-07
            Article
            10.1103/PhysRevD.91.034014
            1412.5951
            3016f3d2-143e-4572-93c0-a0abda55711d

            http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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            Custom metadata
            Phys. Rev. D 91 (2015) 034014
            14 pages, 23 figures, 3 tables, one appendix
            hep-ph

            High energy & Particle physics
            High energy & Particle physics

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