Calibration and performance of proANUBIS: A proof-of-concept detector for the ANUBIS experiment

Long-lived particles with lifetimes τ > 10 ps are predicted by many extensions of the Standard Model with viable dark matter candidates. The ANUBIS experiment proposes to extend the experimental sensitivity to long-lived particles by instrumenting the ceiling of the ATLAS cavern with Resistive Plate Chamber detectors in order to reconstruct vertices from long-lived particle decays in the air-filled volume above the ATLAS detector. The pro ANUBIS detector has been installed in the ATLAS cavern to validate the detector technology planned for ANUBIS and to take in-situ measurements of muon and hadron fluxes inside the ATLAS cavern using p p collision data from the LHC. In this paper, the data collected, reconstruction techniques used, and performance of the pro ANUBIS detector are discussed. The detection efficiency and timing resolution are found to be consistent with expectations and to meet the performance requirements of ANUBIS.

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Publication Details

Journal
Nuclear Instruments and Methods in Physics Research Section A Accelerators Spectrometers Detectors and Associated Equipment
Published
2026-10-05
DOI
https://doi.org/10.1016/j.nima.2026.172103
Primary Topic
Particle Detector Development and Performance
Type
article
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article

Calibration and performance of proANUBIS: A proof-of-concept detector for the ANUBIS experiment

Julian Friedrich Wack, Théo Reymermier, P. Collins, L. Pizzimento et al.
Nuclear Instruments and Methods in Physics Research Section A Accelerators Spectrometers Detectors and Associated Equipment
Particle Detector Development and Performance
article

Calibration and performance of proANUBIS: A proof-of-concept detector for the ANUBIS experiment

Julian Friedrich Wack, Théo Reymermier, P. Collins, L. Pizzimento, Jonas Dej, Aashaq Shah, Paul Swallow, Yanglin Wan, C A Escobar Ruiz, Tom Spencer, Kaijia Liu, Jude Burling, Giulio Aielli, Christopher Lester, Oleg Brandt, Ludovico Pontecorvo, Michael Revering
article en

Abstract

Long-lived particles with lifetimes τ > 10 ps are predicted by many extensions of the Standard Model with viable dark matter candidates. The ANUBIS experiment proposes to extend the experimental sensitivity to long-lived particles by instrumenting the ceiling of the ATLAS cavern with Resistive Plate Chamber detectors in order to reconstruct vertices from long-lived particle decays in the air-filled volume above the ATLAS detector. The pro ANUBIS detector has been installed in the ATLAS cavern to validate the detector technology planned for ANUBIS and to take in-situ measurements of muon and hadron fluxes inside the ATLAS cavern using p p collision data from the LHC. In this paper, the data collected, reconstruction techniques used, and performance of the pro ANUBIS detector are discussed. The detection efficiency and timing resolution are found to be consistent with expectations and to meet the performance requirements of ANUBIS.

Nuclear Instruments and Methods in Physics Research Section A Accelerators Spectrometers Detectors and Associated EquipmentVol. 1094
Glasgow Caledonian University (GB), University of Cambridge (GB), Istituto Nazionale di Fisica Nucleare, Roma Tor Vergata (IT), Institute of Nuclear Physics of Lyon (FR), European Organization for Nuclear Research (CH), University of Hong Kong (HK), University of Edinburgh (GB)
Openalex Percentile: Top 48%
Particle Detector Development and Performance
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