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Search for Quasiparticle Scattering in the Quark-Gluon Plasma with Jet Splittings in pp and Pb-Pb Collisions at sNN =5.02 TeV

  • ALICE Collaboration
  • Université Clermont Auvergne
  • Variable Energy Cyclotron Centre India
  • CERN
  • National Institute for Nuclear Physics
  • Aligarh Muslim University
  • Korea Institute of Science and Technology Information
  • Pavol Jozef Šafárik University
  • Goethe University Frankfurt
  • GSI Helmholtz Centre for Heavy Ion Research
  • Central China Normal University
  • Universidad Nacional Autónoma de México
  • University of Houston
  • Sungkyunkwan University
  • University of Bergen
  • Technical University of Munich
  • Benemerita Universidad Autonoma de Puebla
  • Horia Hulubei National Institute of Physics and Nuclear Engineering
  • University of Derby
  • University of Münster
  • Heidelberg University 
  • Lawrence Berkeley National Laboratory
  • Nantes Université
  • Université Grenoble Alpes
  • Universidade de São Paulo
  • University of Oslo
  • Yale University

Research output: Contribution to journalJournal articlepeer-review

Abstract

The ALICE Collaboration reports measurements of the large relative transverse momentum (kT) component of jet substructure in pp and Pb-Pb collisions at center-of-mass energy per nucleon pair sNN=5.02 TeV. Enhancement in the yield of such large-kT emissions in head-on Pb-Pb collisions is predicted to arise from partonic scattering with quasiparticles of the quark-gluon plasma. The analysis utilizes charged-particle jets reconstructed by the anti-kT algorithm with resolution parameter R=0.2 in the transverse-momentum interval 60<pT,ch,jet<80 GeV/c. The soft drop and dynamical grooming algorithms are used to identify high transverse momentum splittings in the jet shower. Comparison of measurements in Pb-Pb and pp collisions shows medium-induced narrowing, corresponding to yield suppression of high-kT splittings, in contrast to the expectation of yield enhancement due to quasiparticle scattering. The measurements are compared to theoretical model calculations incorporating jet modification due to jet-medium interactions ("jet quenching"), both with and without quasiparticle scattering effects. These measurements provide new insight into the underlying mechanisms and theoretical modeling of jet quenching.

Original languageEnglish
Article number031901
JournalPhysical Review Letters
Volume135
Issue number3
DOIs
StatePublished - 2025.07.18

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