Scientific article
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Using pile-up collisions as an abundant source of low-energy hadronic physics processes in ATLAS and an extraction of the jet energy resolution

ContributorsATLAS Collaboration
Published inThe journal of high energy physics, vol. 12, no. 12
Publication date2024
First online date2024-12-04
Abstract

During the 2015–2018 data-taking period, the Large Hadron Collider delivered proton-proton bunch crossings at a centre-of-mass energy of 13 TeV to the ATLAS experiment at a rate of roughly 30 MHz, where each bunch crossing contained an average of 34 independent inelastic proton-proton collisions. The ATLAS trigger system selected roughly 1 kHz of these bunch crossings to be recorded to disk. Offline algorithms then identify one of the recorded collisions as the collision of interest for subsequent data analysis, and the remaining collisions are referred to as pile-up.Pile-up collisions represent a trigger-unbiased dataset, which is evaluated to have an integrated luminosity of 1.33 pb$^{−1}$ in 2015–2018. This is small compared with the normal trigger-based ATLAS dataset, but when combined with vertex-by-vertex jet reconstruction it provides up to 50 times more dijet events than the conventional single-jet-trigger-based approach, and does so without adding any additional cost or requirements on the trigger system, readout, or storage. The pile-up dataset is validated through comparisons with a special trigger-unbiased dataset recorded by ATLAS, and its utility is demonstrated by means of a measurement of the jet energy resolution in dijet events, where the statistical uncertainty is significantly reduced for jet transverse momenta below 65 GeV.[graphic not available: see fulltext]

Keywords
  • Hadron-Hadron Scattering
  • Jets
  • Jet Physics
Citation (ISO format)
ATLAS Collaboration. Using pile-up collisions as an abundant source of low-energy hadronic physics processes in ATLAS and an extraction of the jet energy resolution. In: The journal of high energy physics, 2024, vol. 12, n° 12. doi: 10.1007/JHEP12(2024)032
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Additional URL for this publicationhttps://link.springer.com/10.1007/JHEP12(2024)032
Journal ISSN1029-8479
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