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Constraints on spin-0 dark matter mediators and invisible Higgs decays using ATLAS 13 TeV pp collision data with two top quarks and missing energy in the final state

This paper presents a statistical combination of searches targeting final states with two top quarks and invisible particles and characterised by the presence of zero, one or two leptons, at least one jet originating from a $b$-quark and missing transverse momentum. The analyses are performed with t...

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Autor principal: The ATLAS collaboration
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:http://cds.cern.ch/record/2805211
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author The ATLAS collaboration
author_facet The ATLAS collaboration
author_sort The ATLAS collaboration
collection CERN
description This paper presents a statistical combination of searches targeting final states with two top quarks and invisible particles and characterised by the presence of zero, one or two leptons, at least one jet originating from a $b$-quark and missing transverse momentum. The analyses are performed with the ATLAS detector using 139 fb$^{-1}$ of $pp$ collisions at a centre-of-mass energy of 13 TeV at the LHC and search for phenomena beyond the Standard Model consistent with the production of dark matter particles at colliders. The results are interpreted in terms of simplified dark matter models with a spin-0 scalar or pseudoscalar mediator particle. In addition, the results are interpreted in terms of upper limits on the Higgs boson invisible branching ratio, where the Higgs boson is produced according to the Standard Model in association with a pair of top quarks. For scalar (pseudoscalar) dark matter models, the statistical combination extends the excluded mass range by 100~(30) GeV with respect to the best of the individual channels, excluding mediator masses up to 370 GeV for unitary couplings assumptions. In addition, the statistical combination improves the expected coupling exclusion reach by 14% (24%), assuming a scalar (pseudoscalar) mediator of 10 GeV. An upper limit on the Higgs boson invisible branching ratio of 0.40 ($0.30^{+0.13}_{-0.09}$) is observed (expected) at 95% confidence level.
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spelling cern-28052112022-11-10T14:00:08Zhttp://cds.cern.ch/record/2805211engThe ATLAS collaborationConstraints on spin-0 dark matter mediators and invisible Higgs decays using ATLAS 13 TeV pp collision data with two top quarks and missing energy in the final stateParticle Physics - ExperimentThis paper presents a statistical combination of searches targeting final states with two top quarks and invisible particles and characterised by the presence of zero, one or two leptons, at least one jet originating from a $b$-quark and missing transverse momentum. The analyses are performed with the ATLAS detector using 139 fb$^{-1}$ of $pp$ collisions at a centre-of-mass energy of 13 TeV at the LHC and search for phenomena beyond the Standard Model consistent with the production of dark matter particles at colliders. The results are interpreted in terms of simplified dark matter models with a spin-0 scalar or pseudoscalar mediator particle. In addition, the results are interpreted in terms of upper limits on the Higgs boson invisible branching ratio, where the Higgs boson is produced according to the Standard Model in association with a pair of top quarks. For scalar (pseudoscalar) dark matter models, the statistical combination extends the excluded mass range by 100~(30) GeV with respect to the best of the individual channels, excluding mediator masses up to 370 GeV for unitary couplings assumptions. In addition, the statistical combination improves the expected coupling exclusion reach by 14% (24%), assuming a scalar (pseudoscalar) mediator of 10 GeV. An upper limit on the Higgs boson invisible branching ratio of 0.40 ($0.30^{+0.13}_{-0.09}$) is observed (expected) at 95% confidence level.ATLAS-CONF-2022-007oai:cds.cern.ch:28052112022-03-29
spellingShingle Particle Physics - Experiment
The ATLAS collaboration
Constraints on spin-0 dark matter mediators and invisible Higgs decays using ATLAS 13 TeV pp collision data with two top quarks and missing energy in the final state
title Constraints on spin-0 dark matter mediators and invisible Higgs decays using ATLAS 13 TeV pp collision data with two top quarks and missing energy in the final state
title_full Constraints on spin-0 dark matter mediators and invisible Higgs decays using ATLAS 13 TeV pp collision data with two top quarks and missing energy in the final state
title_fullStr Constraints on spin-0 dark matter mediators and invisible Higgs decays using ATLAS 13 TeV pp collision data with two top quarks and missing energy in the final state
title_full_unstemmed Constraints on spin-0 dark matter mediators and invisible Higgs decays using ATLAS 13 TeV pp collision data with two top quarks and missing energy in the final state
title_short Constraints on spin-0 dark matter mediators and invisible Higgs decays using ATLAS 13 TeV pp collision data with two top quarks and missing energy in the final state
title_sort constraints on spin-0 dark matter mediators and invisible higgs decays using atlas 13 tev pp collision data with two top quarks and missing energy in the final state
topic Particle Physics - Experiment
url http://cds.cern.ch/record/2805211
work_keys_str_mv AT theatlascollaboration constraintsonspin0darkmattermediatorsandinvisiblehiggsdecaysusingatlas13tevppcollisiondatawithtwotopquarksandmissingenergyinthefinalstate