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Constraints on mediator-based dark matter and scalar dark energy models using √s = 13 TeV pp collision data collected by the ATLAS detector

Contributeurs/tricesATLAS Collaboration
Publié dansJournal of High Energy Physics, vol. 1905, 142
Collection
  • Open Access - SCOAP3
Date de publication2019
Résumé

Constraints on selected mediator-based dark matter models and a scalar dark energy model using up to 37 fb −1 √s = 13 TeV pp collision data collected by the ATLAS detector at the LHC during 2015-2016 are summarised in this paper. The results of experimental searches in a variety of final states are interpreted in terms of a set of spin-1 and spin-0 single-mediator dark matter simplified models and a second set of models involving an extended Higgs sector plus an additional vector or pseudo-scalar mediator. The searches considered in this paper constrain spin-1 leptophobic and leptophilic mediators, spin-0 colour-neutral and colour-charged mediators and vector or pseudo-scalar mediators embedded in extended Higgs sector models. In this case, also √s = 8 TeV pp collision data are used for the interpretation of the results. The results are also interpreted for the first time in terms of light scalar particles that could contribute to the accelerating expansion of the universe (dark energy).

Mots-clés
  • Dark matter
  • Hadron-Hadron scattering (experiments)
Citation (format ISO)
ATLAS Collaboration. Constraints on mediator-based dark matter and scalar dark energy models using √s = 13 TeV pp collision data collected by the ATLAS detector. In: Journal of High Energy Physics, 2019, vol. 1905, p. 142. doi: 10.1007/JHEP05(2019)142
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Article (Published version)
Identifiants
ISSN du journal1029-8479
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Informations techniques

Création04/06/2019 17:13:08
Première validation04/06/2019 17:13:08
Heure de mise à jour15/03/2023 17:12:17
Changement de statut15/03/2023 17:12:16
Dernière indexation12/02/2024 11:40:59
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