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Measurement of the energy asymmetry in tt¯ j production at 13 TeV with the ATLAS experiment and interpretation in the SMEFT framework

  • ATLAS Collaboration
  • Application and Research Center for Advanced Studies
  • Istanbul Aydin University (IAU)
  • Faculty of Engineering and Natural Sciences
  • Bahcesehir University
  • iThemba Labs
  • Department of Physics
  • University of South Africa
  • Faculté Des Sciences-Semlalia
  • Mohammed VI Polytechnic University
  • New York University
  • United Arab Emirates University
  • European Organization for Nuclear Research
  • Aix-Marseille Université
  • University of Oklahoma
  • University of Massachusetts Amherst
  • Georg-August-Universität Göttingen
  • University of London
  • Brookhaven National Laboratory
  • University Mohammed V in Rabat
  • Tel Aviv University
  • Technion - Israel Institute of Technology
  • Argonne National Laboratory
  • Pontificia Universidad Católica de Chile
  • Sezione INFN di Roma La Sapienza
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  • King's College London
  • Johannes Gutenberg University
  • Laboratoire d’Annecy-Le-Vieux de Physique des Particules (CNRS/IN2P3/LAPP)
  • Univ of Mining and Metallurgy
  • University of Toronto
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  • 'Al. I. Cuza' University
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  • Joint Inst. for Nuclear Research
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  • Oklahoma State University
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  • University of British Columbia
  • Institute of Particle Physics
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  • University of Trento
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  • Institute for High Energy Physics (IHEP)
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  • City College of New York
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  • National Institute for R&D of Isotopic and Molecular Technologies
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  • TOBB University of Economics and Technology
  • Universität Hamburg
  • Kyoto University of Education
  • Wigner Research Centre for Physics
  • Universidad de la Serena in la Serena
  • Institut für Theoretische Physik Heidelberg

Research output: Contribution to journalArticlepeer-review

14 Scopus citations

Abstract

A measurement of the energy asymmetry in jet-associated top-quark pair production is presented using 139fb-1 of data collected by the ATLAS detector at the Large Hadron Collider during pp collisions at s=13TeV. The observable measures the different probability of top and antitop quarks to have the higher energy as a function of the jet scattering angle with respect to the beam axis. The energy asymmetry is measured in the semileptonic tt¯ decay channel, and the hadronically decaying top quark must have transverse momentum above 350GeV. The results are corrected for detector effects to particle level in three bins of the scattering angle of the associated jet. The measurement agrees with the SM prediction at next-to-leading-order accuracy in quantum chromodynamics in all three bins. In the bin with the largest expected asymmetry, where the jet is emitted perpendicular to the beam, the energy asymmetry is measured to be - 0.043 ± 0.020 , in agreement with the SM prediction of - 0.037 ± 0.003. Interpreting this result in the framework of the Standard Model effective field theory (SMEFT), it is shown that the energy asymmetry is sensitive to the top-quark chirality in four-quark operators and is therefore a valuable new observable in global SMEFT fits.

Original languageEnglish
Article number374
JournalEuropean Physical Journal C
Volume82
Issue number4
DOIs
StatePublished - Apr 2022
Externally publishedYes

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