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Non-linear flow modes of identified particles in Pb-Pb collisions at √sNN = 5.02 TeV

  • ALICE Collaboration
  • CERN
  • Variable Energy Cyclotron Centre
  • Czech Academy of Sciences
  • Lund University
  • Panjab University
  • National Institute for Nuclear Physics
  • Enrico Fermi Center
  • Korea Institute of Science and Technology Information
  • Russian Research Centre Kurchatov Institute
  • GSI Helmholtz Centre for Heavy Ion Research
  • Universidade Estadual de Campinas
  • Central China Normal University
  • Universidad Nacional Autónoma de México
  • Aligarh Muslim University
  • COMSATS University Islamabad
  • NASU - Bogolyubov Institute for Theoretical Physics
  • University of Bergen
  • Goethe University Frankfurt
  • St. Petersburg State University
  • Horia Hulubei National Institute of Physics and Nuclear Engineering
  • University of Birmingham
  • University of Münster
  • University of Turin
  • Polytechnic University of Turin

Research output: Contribution to journalArticleAcademicpeer-review

Abstract

The pT-differential non-linear flow modes, v4,22, v5,32, v6,33 and v6,222 for π±, K±, KS0 , p + p¯ , Λ + Λ¯ and ϕ-meson have been measured for the first time at √sNN = 5.02 TeV in Pb-Pb collisions with the ALICE detector at the Large Hadron Collider. The results were obtained with a multi-particle technique, correlating the identified hadrons with reference charged particles from a different pseudorapidity region. These non-linear observables probe the contribution from the second and third order initial spatial anisotropy coefficients to higher flow harmonics. All the characteristic features observed in previous pT-differential anisotropic flow measurements for various particle species are also present in the non-linear flow modes, i.e. increase of magnitude with increasing centrality percentile, mass ordering at low pT and particle type grouping in the intermediate pT range. Hydrodynamical calculations (iEBE-VISHNU) that use different initial conditions and values of shear and bulk viscosity to entropy density ratios are confronted with the data at low transverse momenta. These calculations exhibit a better agreement with the anisotropic flow coefficients than the non-linear flow modes. These observations indicate that non-linear flow modes can provide additional discriminatory power in the study of initial conditions as well as new stringent constraints to hydrodynamical calculations. [Figure not available: see fulltext.].

Original languageEnglish
Article number147
Number of pages48
JournalJournal of High Energy Physics
Volume2020
Issue number6
DOIs
Publication statusPublished - 24 Jun 2020

Keywords

  • Heavy Ion Experiments

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