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Measurement of the relative yields of ψ(2S) to ψ(1S) mesons produced at forward and backward rapidity in p+p, p+Al, p+Au, and He 3 +Au collisions at s NN =200 GeV

  • PHENIX Collaboration
  • University of Colorado Boulder
  • University of Michigan, Ann Arbor
  • Stony Brook University
  • RIKEN
  • Brookhaven National Lab
  • Howard University
  • High Energy Accelerator Research Organization, Tsukuba
  • Iowa State University
  • Kyoto University
  • Brookhaven National Laboratory
  • Institute for High Energy Physics
  • University of Massachusetts
  • University of California at Riverside
  • City University of New York
  • Peter the Great St. Petersburg Polytechnic University
  • Russian Research Centre Kurchatov Institute
  • Los Alamos National Laboratory
  • New Mexico State University
  • Muhlenberg College
  • Georgia State University
  • Columbia University
  • University of Illinois at Urbana-Champaign
  • Jeonbuk National University
  • University of Tsukuba
  • Weizmann Institute of Science

Research output: Contribution to journalArticlepeer-review

40 Scopus citations

Abstract

The PHENIX Collaboration has measured the ratio of the yields of ψ(2S) to ψ(1S) mesons produced in p+p, p+Al, p+Au, and He3+Au collisions at sNN=200 GeV over the forward and backward rapidity intervals 1.2<|y|<2.2. We find that the ratio in p+p collisions is consistent with measurements at other collision energies. In collisions with nuclei, we find that in the forward (p-going or He3-going) direction, the relative yield of ψ(2S) mesons to ψ(1S) mesons is consistent with the value measured in p+p collisions. However, in the backward (nucleus-going) direction, the ψ(2S) meson is preferentially suppressed by a factor of ∼2. This suppression is attributed in some models to the breakup of the weakly bound ψ(2S) meson through final-state interactions with comoving particles, which have a higher density in the nucleus-going direction. These breakup effects may compete with color screening in a deconfined quark-gluon plasma to produce sequential suppression of excited quarkonia states.

Original languageEnglish
Article number034904
JournalPhysical Review C
Volume95
Issue number3
DOIs
StatePublished - Mar 9 2017

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