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Multiplicity dependence of π , K, and p production in pp collisions at √s=13 TeV

  • ALICE Collaboration
  • CERN
  • Variable Energy Cyclotron Centre India
  • Czech Academy of Sciences
  • Goethe University Frankfurt
  • Lund University
  • Panjab University
  • Polytechnic University of Turin
  • Enrico Fermi Center
  • National Institute for Nuclear Physics
  • Aligarh Muslim University
  • 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
  • COMSATS University Islamabad
  • NASU - Bogolyubov Institute for Theoretical Physics
  • University of Bergen
  • St. Petersburg State University
  • Horia Hulubei National Institute of Physics and Nuclear Engineering
  • University of Birmingham
  • University of Münster
  • Heidelberg University 
  • Creighton University
  • Ruder Boskovic Institute
  • Lawrence Berkeley National Laboratory
  • Nantes Université
  • University of Oslo
  • Université de Paris-Sud

Research output: Contribution to journalJournal articlepeer-review

Abstract

This paper presents the measurements of π±, K ±, p and p ¯ transverse momentum (pT) spectra as a function of charged-particle multiplicity density in proton–proton (pp) collisions at s=13TeV with the ALICE detector at the LHC. Such study allows us to isolate the center-of-mass energy dependence of light-flavour particle production. The measurements reported here cover a pT range from 0.1 to 20 GeV / c and are done in the rapidity interval | y| < 0.5. The pT-differential particle ratios exhibit an evolution with multiplicity, similar to that observed in pp collisions at s=7TeV, which is qualitatively described by some of the hydrodynamical and pQCD-inspired models discussed in this paper. Furthermore, the pT-integrated hadron-to-pion yield ratios measured in pp collisions at two different center-of-mass energies are consistent when compared at similar multiplicities. This also extends to strange and multi-strange hadrons, suggesting that, at LHC energies, particle hadrochemistry scales with particle multiplicity the same way under different collision energies and colliding systems.

Original languageEnglish
Article number693
JournalEuropean Physical Journal C
Volume80
Issue number8
DOIs
StatePublished - 2020.08.1

Quacquarelli Symonds(QS) Subject Topics

  • Physics & Astronomy

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