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Combination of searches for invisible decays of the Higgs boson using 139 fb−1 of proton-proton collision data at s=13 TeV collected with the ATLAS experiment

  • The ATLAS collaboration
  • Aix-Marseille Université
  • University of Oklahoma
  • University of Göttingen
  • United States Department of Energy
  • Mohammed V University in Rabat
  • Tel Aviv University
  • Technion-Israel Institute of Technology
  • New York University
  • Pontificia Universidad Católica de Chile
  • National Institute for Nuclear Physics
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  • University of Toronto
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  • Northern Illinois University
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  • Rutherford Appleton Laboratory
  • University of California at Santa Cruz
  • CERN
  • Institute for High Energy Physics
  • University of Pavia
  • Johannes Gutenberg University Mainz
  • Alexandru Ioan Cuza University of Iaşi
  • University of Granada
  • McGill University
  • Royal Holloway University of London
  • German Electron Synchrotron
  • University of Rome Tor Vergata
  • University of Hassan II Casablanca
  • Weizmann Institute of Science
  • Lund University
  • University of Bonn
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  • National Technical University of Athens
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  • National Institute for Research and Development of Isotopic and Molecular Technologies
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  • Universidad de La Serena

Research output: Contribution to journalArticlepeer-review

103 Citations (Scopus)

Abstract

Many extensions of the Standard Model predict the production of dark matter particles at the LHC. Sufficiently light dark matter particles may be produced in decays of the Higgs boson that would appear invisible to the detector. This Letter presents a statistical combination of searches for H→invisible decays where multiple production modes of the Standard Model Higgs boson are considered. These searches are performed with the ATLAS detector using 139 fb−1 of proton–proton collisions at a centre–of–mass energy of [Formula presented] at the LHC. In combination with the results at [Formula presented] and [Formula presented], an upper limit on the H→invisible branching ratio of 0.107 (0.077) at the 95% confidence level is observed (expected). These results are also interpreted in the context of models where the 125 GeV Higgs boson acts as a portal to dark matter, and limits are set on the scattering cross-section of weakly interacting massive particles and nucleons.

Original languageEnglish
Article number137963
JournalPhysics Letters, Section B: Nuclear, Elementary Particle and High-Energy Physics
Volume842
DOIs
Publication statusPublished - 10 Jul 2023

ASJC Scopus subject areas

  • Nuclear and High Energy Physics

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