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Measurement of hadronic event shapes in high-pT multijet final states at √s = 13 TeV with the ATLAS detector

ContributorsATLAS Collaboration
Published inThe journal of high energy physics, vol. 01, no. 1
Publication date2021
First online date2021-01-28
Abstract

A measurement of event-shape variables in proton-proton collisions at large momentum transfer is presented using data collected at $ \sqrt{s} $ = 13 TeV with the ATLAS detector at the Large Hadron Collider. Six event-shape variables calculated using hadronic jets are studied in inclusive multijet events using data corresponding to an integrated luminosity of 139 fb$^{−1}$. Measurements are performed in bins of jet multiplicity and in different ranges of the scalar sum of the transverse momenta of the two leading jets, reaching scales beyond 2 TeV. These measurements are compared with predictions from Monte Carlo event generators containing leading-order or next-to-leading order matrix elements matched to parton showers simulated to leading-logarithm accuracy. At low jet multiplicities, shape discrepancies between the measurements and the Monte Carlo predictions are observed. At high jet multiplicities, the shapes are better described but discrepancies in the normalisation are observed.[graphic not available: see fulltext]

Keywords
  • Hadron-Hadron scattering (experiments)
  • P p: scattering
  • P p: colliding beams
  • Jet: multiple production
  • Jet: multiplicity: high
  • Jet: hadronic
  • Parton: showers
  • Quantum chromodynamics: perturbation theory
  • Perturbation theory: higher-order
  • Higher-order: 0
  • Higher-order: 1
  • Final state: ((n)jet)
  • Numerical calculations: Monte Carlo
  • Event shape analysis
  • ATLAS
  • Transverse momentum dependence
  • Multiplicity: dependence
  • Momentum transfer
  • CERN LHC Coll
  • Experimental results
  • 13000 GeV-cms
Citation (ISO format)
ATLAS Collaboration. Measurement of hadronic event shapes in high-pT multijet final states at √s = 13 TeV with the ATLAS detector. In: The journal of high energy physics, 2021, vol. 01, n° 1. doi: 10.1007/JHEP01(2021)188
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Article (Published version)
Identifiers
Additional URL for this publicationhttps://link.springer.com/10.1007/JHEP01(2021)188
Journal ISSN1029-8479
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