Publication:
Search for dark matter in events with energetic, hadronically decaying top quarks and missing transverse momentum at $$ \sqrt{s}=13 $$ TeV

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Springer Science and Business Media LLC

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Abstract A search for dark matter is conducted in events with large missing transverse momentum and a hadronically decaying, Lorentz-boosted top quark. This study is performed using proton-proton collisions at a center-of-mass energy of 13 TeV, in data recorded by the CMS detector in 2016 at the LHC, corresponding to an integrated luminosity of 36 fb−1. New substructure techniques, including the novel use of energy correlation functions, are utilized to identify the decay products of the top quark. With no significant deviations observed from predictions of the standard model, limits are placed on the production of new heavy bosons coupling to dark matter particles. For a scenario with purely vector-like or purely axial-vector-like flavor changing neutral currents, mediator masses between 0.20 and 1.75 TeV are excluded at 95% confidence level, given a sufficiently small dark matter mass. Scalar resonances decaying into a top quark and a dark matter fermion are excluded for masses below 3.4 TeV, assuming a dark matter mass of 100 GeV.

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Journal of High Energy Physics

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OPEN

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Dark matter, Hadron-Hadron scattering (experiments), Top physics, Electroweak corrections, Candidates, Bosons, Bosons, transverse momentum: missing-energy, final state: ((n)jet), GeV-cms, flavor changing, Physics, Particles & Fields, High Energy Physics - Experiment, High Energy Physics - Experiment (hep-ex), Hadron-Hadron scattering (experiments), resonance: mass: lower limit, [PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex], Dark Matter, Top physic, info:eu-repo/classification/ddc/530, Transverse momentum, Candidates, S030dmp, Physical Sciences, CMS, Physics, ddc:530, top: hadronic decay, Top Physics, Nuclear & Particles Physics, Dark matter, Hadron-Hadron scattering (experiments), Top physics, Hadron-Hadron Scattering (Experiments), CERN LHC Coll, Q1 Science (General) / természettudomány általában, boson: heavy, Top physics, Physical Sciences, Physique des particules élémentaires, Particle physics, top: pair production, Nuclear and High Energy Physics, data analysis method, boson: coupling, p p: scattering, [PHYS.HEXP] Physics [physics]/High Energy Physics - Experiment [hep-ex], Physics, Particles & Fields, FOS: Physical sciences, Physics Institute, Dark matter, Hadron-Hadron scattering (experiments), Top physics, Nuclear and High Energy Physics, Dark matter, Hadron-Hadron scattering (experiments), Top physics, Dark matter, fermion: dark matter, mediation, structure, Nuclear and High Energy Physics, ЭБ БГУ::ЕСТЕСТВЕННЫЕ И ТОЧНЫЕ НАУКИ::Физика, Mathematical Sciences, Science & Technology, coupling: vector, Particle physics, Large hadron collider, CMS, hep-ex, dark matter: mass, neutral current: flavor changing, high energy physics, experimental particle physics, LHC, CMS, standard model, Large hadron collider, Top quarks, coupling: axial-vector, energy: correlation function, dark matter, hadron-hadron scattering (experiments), top physics, cms, Dark matter, Hadron-Hadron scattering (experiments), Top physics., resonance: scalar, Electroweak corrections, p p: colliding beams, top: boosted particle, experimental results

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