{"@context":"http://schema.org","@id":"https://doi.org/10.17182/hepdata.127994.v1","@reverse":{"isBasedOn":[{"@type":"ScholarlyArticle","identifier":{"@type":"PropertyValue","propertyID":"URL","value":"https://inspirehep.net/literature/2080541"}},{"@id":"https://doi.org/10.1007/JHEP06(2023)158","@type":"JournalArticle"}]},"@type":"Dataset","additionalType":"Collection","author":{"@type":"Organization","name":"ATLAS Collaboration"},"creator":{"@type":"Organization","name":"ATLAS Collaboration"},"datePublished":"2022","description":"This paper presents a search for hypothetical massive, charged, long-lived particles with the ATLAS detector at the LHC using an integrated luminosity of $139 \\mathrm{fb^{-1}}$ of proton--proton collisions at $\\sqrt{s}=13 \\text{TeV}$. These particles are expected to move significantly slower than the speed of light and should be identifiable by their high transverse momenta and anomalously large specific ionisation losses, $dE/dx$. Trajectories reconstructed solely by the inner tracking system and a $dE/dx$ measurement in the pixel detector layers provide sensitivity to particles with lifetimes down to ${\\cal O}(1) \\text{ns}$ with a mass, measured using the Bethe--Bloch relation, ranging from $100 \\text{GeV}$ to 3 $\\text{TeV}$. Interpretations for pair-production of $R$-hadrons, charginos and staus in scenarios of supersymmetry compatible with these particles being long-lived are presented, with mass limits extending considerably beyond those from previous searches in broad ranges of lifetime.","hasPart":[{"@id":"https://doi.org/10.17182/hepdata.127994.v1/t1","@type":"Dataset","description":"This material aims to give people outside the ATLAS Collaboration the possibility to reinterpret the results from the search for...","name":"README and table of contents"},{"@id":"https://doi.org/10.17182/hepdata.127994.v1/t2","@type":"Dataset","description":"Comparison of the observed and expected VAR distributionsin VR-LowPt-Inclusive_High. 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