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Λ c+ production in pp collisions at √s=7 TeV and in p-Pb collisions at √sNN=5.02 TeV

  • The ALICE collaboration
  • CERN
  • Variable Energy Cyclotron Centre India
  • University of California at Berkeley
  • Czech Academy of Sciences
  • Lund University
  • Panjab University
  • Polytechnic University of Turin
  • Indian Institute of Technology Bombay
  • Korea Institute of Science and Technology Information
  • Yale University
  • Alikhanov Institute for Theoretical and Experimental Physics
  • GSI Helmholtz Centre for Heavy Ion Research
  • Universidade Estadual de Campinas
  • Russian Research Centre Kurchatov Institute
  • National Institute for Nuclear Physics
  • Universidad Nacional Autónoma de México
  • COMSATS University Islamabad
  • Enrico Fermi Center
  • 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
  • Heidelberg University 
  • Creighton University
  • Ruder Boskovic Institute
  • Lawrence Berkeley National Laboratory
  • Nantes Université
  • Technical University of Munich
  • Technische Universität München
  • University of Oslo
  • Aligarh Muslim University
  • Inha University
  • Konkuk University

Research output: Contribution to journalJournal articlepeer-review

Abstract

The pT-differential production cross section of prompt Λc+ charmed baryons was measured with the ALICE detector at the Large Hadron Collider (LHC) in pp collisions at s=7 TeV and in p-Pb collisions at sNN=5.02 TeV at midrapidity. The Λc+ and Λ¯ c ¯ were reconstructed in the hadronic decay modes Λc+ → pKπ+, Λc+ → pKS0 and in the semileptonic channel Λc+ → e+νeΛ (and charge conjugates). The measured values of the Λc+/D0 ratio, which is sensitive to the c-quark hadronisation mechanism, and in particular to the production of baryons, are presented and are larger than those measured previously in different colliding systems, centre-of-mass energies, rapidity and pT intervals, where the Λc+ production process may differ. The results are compared with the expectations obtained from perturbative Quantum Chromodynamics calculations and Monte Carlo event generators. Neither perturbative QCD calculations nor Monte Carlo models reproduce the data, indicating that the fragmentation of heavy-flavour baryons is not well understood. The first measurement at the LHC of the Λc+ nuclear modification factor, RpPb, is also presented. The RpPb is found to be consistent with unity and with that of D mesons within the uncertainties, and consistent with a theoretical calculation that includes cold nuclear matter effects and a calculation that includes charm quark interactions with a deconfined medium.[Figure not available: see fulltext.]

Original languageEnglish
Article number108
JournalJournal of High Energy Physics
Volume2018
Issue number4
DOIs
StatePublished - 2018.04.1

Keywords

  • Heavy Ion Experiments
  • Quark gluon plasma

Quacquarelli Symonds(QS) Subject Topics

  • Physics & Astronomy

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