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Measurements of transverse energy distributions in Au+Au collisions at √sNN=200 GeV 054907

  • STAR Collaboration
  • University of Birmingham
  • Panjab University
  • Variable Energy Cyclotron Centre
  • Kent State University
  • University of Bern
  • Brookhaven National Laboratory
  • Joint Institute for Nuclear Research
  • National Institute for Subatomic Physics
  • Indiana University Bloomington
  • Purdue University
  • Institut de Recherches Subatomiques
  • Ohio State University
  • Wayne State University
  • Goethe University Frankfurt
  • Yale University
  • University of Rajasthan
  • University of Washington
  • Rice University
  • SUBATECH
  • Moscow Engineering Physics Institute
  • Czech Academy of Sciences
  • Argonne National Laboratory
  • Chinese Academy of Sciences
  • Lawrence Berkeley National Laboratory
  • University of California at Davis
  • Warsaw University of Technology
  • University of Science and Technology of China
  • University of California at Los Angeles
  • Tsinghua University
  • Creighton University
  • University of California at Berkeley
  • Universidade de São Paulo
  • Institute for High Energy Physics
  • Institute of Physics
  • Max Planck Institute for Physics (Werner Heisenberg Institute)
  • Texas A&M University
  • Valparaiso University
  • University of Jammu
  • Pennsylvania State University
  • University of Texas at Austin
  • California Institute of Technology
  • Carnegie Mellon University
  • Massachusetts Institute of Technology
  • City University of New York
  • Central China Normal University
  • University of Zagreb
  • Michigan State University
  • Indian Institute of Technology Bombay

Research output: Contribution to journalArticlepeer-review

78 Scopus citations

Abstract

Transverse energy (ET) distributions have been measured for Au+Au collisions at √sNN=200 GeV by the STAR Collaboration at RHIC. ET is constructed from its hadronic and electromagnetic components, which have been measured separately. ET production for the most central collisions is well described by several theoretical models whose common feature is large energy density achieved early in the fireball evolution. The magnitude and centrality dependence of ET per charged particle agrees well with measurements at lower collision energy, indicating that the growth in ETfor larger collision energy results from the growth in particle production. The electromagnetic fraction of the total ET is consistent with a final state dominated by mesons and independent of centrality.

Original languageEnglish
Article number054907
Pages (from-to)054907-1-054907-14
JournalPhysical Review C - Nuclear Physics
Volume70
Issue number5
DOIs
StatePublished - 1 Nov 2004
Externally publishedYes

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