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Hauptverfasser: Gonski, Julia L., Graham, Peter W., Rajendran, Surjeet, Ramani, Harikrishnan, Wong, Samuel S. Y.
Format: Preprint
Veröffentlicht: 2025
Schlagworte:
Online-Zugang:https://arxiv.org/abs/2512.12023
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author Gonski, Julia L.
Graham, Peter W.
Rajendran, Surjeet
Ramani, Harikrishnan
Wong, Samuel S. Y.
author_facet Gonski, Julia L.
Graham, Peter W.
Rajendran, Surjeet
Ramani, Harikrishnan
Wong, Samuel S. Y.
contents Particles at the TeV scale with lifetimes of a year or longer could have been abundantly produced at the LHC yet escaped detection because of backgrounds, and could still be trapped within detector materials. With gluinos in split-supersymmetry as a working example, we show that these trapped particles can be recovered from detector materials once prepared in liquid form, for example, by melting silicon detectors, extracting liquid argon from the electromagnetic calorimeter, or constructing a large water pool near ATLAS or CMS. These liquid samples can then be processed using iterative centrifugation followed by mass spectrometry, enabling single-particle sensitivity in macroscopic samples. This method can potentially discover gluinos up to 3 TeV in mass at the HL-LHC. It can also improve upon existing limits for other long-lived particles. For example, it can discover the stop up to 2 TeV, and will also be sensitive to integer-charged particles in the TeV range.
format Preprint
id arxiv_https___arxiv_org_abs_2512_12023
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Melting LHC detectors: a novel search for stopped long-lived particles
Gonski, Julia L.
Graham, Peter W.
Rajendran, Surjeet
Ramani, Harikrishnan
Wong, Samuel S. Y.
High Energy Physics - Phenomenology
High Energy Physics - Experiment
Particles at the TeV scale with lifetimes of a year or longer could have been abundantly produced at the LHC yet escaped detection because of backgrounds, and could still be trapped within detector materials. With gluinos in split-supersymmetry as a working example, we show that these trapped particles can be recovered from detector materials once prepared in liquid form, for example, by melting silicon detectors, extracting liquid argon from the electromagnetic calorimeter, or constructing a large water pool near ATLAS or CMS. These liquid samples can then be processed using iterative centrifugation followed by mass spectrometry, enabling single-particle sensitivity in macroscopic samples. This method can potentially discover gluinos up to 3 TeV in mass at the HL-LHC. It can also improve upon existing limits for other long-lived particles. For example, it can discover the stop up to 2 TeV, and will also be sensitive to integer-charged particles in the TeV range.
title Melting LHC detectors: a novel search for stopped long-lived particles
topic High Energy Physics - Phenomenology
High Energy Physics - Experiment
url https://arxiv.org/abs/2512.12023