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Search for massive, long-lived particles in events with displaced vertices and displaced muons in pp collisions at s=13.6 TeV with the ATLAS experiment

  • L.ZwalinskiJrThe ATLAS Collaboration
  • Aix-Marseille Université
  • University of Bergen
  • University of Oklahoma
  • New York University Abu Dhabi
  • University of Göttingen
  • TU Dortmund University
  • United States Department of Energy
  • Southern Methodist University
  • Mohammed V University in Rabat
  • Tel Aviv University
  • National Institute for Nuclear Physics
  • Abdus Salam International Centre for Theoretical Physics
  • Heidelberg University 
  • Université Savoie Mont Blanc
  • AGH University of Krakow
  • SLAC National Accelerator Laboratory
  • University of Manchester
  • Northern Illinois University
  • Istanbul University
  • Rutherford Appleton Laboratory
  • University of California at Santa Cruz
  • The University of Chicago
  • Institute for High Energy Physics
  • Johannes Gutenberg University Mainz
  • Alexandru Ioan Cuza University of Iaşi
  • Khalifa University of Science and Technology
  • CERN
  • Royal Holloway University of London
  • University of Valencia
  • Zhengzhou University
  • University of Rome Tor Vergata
  • Lund University
  • Waseda University
  • University of Bonn
  • University of Würzburg
  • University of Victoria BC
  • University of Bern
  • University of Edinburgh
  • Oklahoma State University

Research output: Contribution to journalArticlepeer-review

Abstract

A search is presented for massive long-lived particles in events featuring at least one displaced vertex and at least one displaced muon, using proton–proton collision data collected by the ATLAS detector at the Large Hadron Collider from 2022 to 2024 at a centre-of-mass energy of 13.6 TeV. The data sample corresponds to an integrated luminosity of 164 fb−1. The analysis targets scenarios in which long-lived particles decay inside the ATLAS inner detector, resulting in a topology of at least one massive, displaced vertex (DV) with multiple associated tracks, and at least one muon with a large transverse impact parameter relative to the primary interaction point. The muon is not required to be associated with the DV. Two signal regions are defined by the transverse distance of the reconstructed DV from the interaction point. Background contributions are estimated by using fully data-driven techniques. No significant excess above the expected background is observed. Upper limits at 95% confidence level are set on the visible cross-section and on the production cross-sections of several benchmark models of R -parity-violating supersymmetry.

Original languageEnglish
Article number140509
JournalPhysics Letters, Section B: Nuclear, Elementary Particle and High-Energy Physics
Volume878
DOIs
StatePublished - Jul 2026

Keywords

  • Displaced muon
  • Displaced vertex
  • Long-lived particles
  • R-parity
  • Supersymmetry

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