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Kinematic dependence of azimuthal anisotropies in p+Au, d+Au, and He 3 +Au at sNN =200 GeV

  • PHENIX Collaboration
  • Georgia State University
  • University of Colorado Boulder
  • University of Michigan, Ann Arbor
  • Stony Brook University
  • RIKEN
  • Riken BNL Research Center
  • Howard University
  • High Energy Accelerator Research Organization, Tsukuba
  • Iowa State University
  • Kyoto University
  • United States Department of Energy
  • NRC Kurchatov Institute IHEP
  • Brookhaven National Laboratory
  • University of Massachusetts
  • University of California at Riverside
  • City University of New York
  • University of North Carolina at Greensboro
  • Peter the Great St. Petersburg Polytechnic University
  • Vanderbilt University
  • Russian Research Centre Kurchatov Institute
  • Moscow Engineering Physics Institute
  • Los Alamos National Laboratory
  • New Mexico State University
  • Columbia University
  • University of Illinois at Urbana-Champaign
  • Jeonbuk National University
  • University of Tsukuba
  • Weizmann Institute of Science
  • Muhlenberg College
  • Eszterhazy Karoly University
  • Hungarian Academy of Sciences

Research output: Contribution to journalJournal articlepeer-review

Abstract

There is strong evidence for the formation of small droplets of quark-gluon plasma in p/d/He3+Au collisions at the Relativistic Heavy Ion Collider (RHIC) and in p+p/Pb collisions at the Large Hadron Collider. In particular, the analysis of data at RHIC for different geometries obtained by varying the projectile size and shape has proved insightful. In the present analysis, we find excellent agreement with the previously published PHENIX at RHIC results on elliptical and triangular flow with an independent analysis via the two-particle correlation method, which has quite different systematic uncertainties and an independent code base. In addition, the results are extended to other detector combinations with different kinematic (pseudorapidity) coverage. These results provide additional constraints on contributions from nonflow and longitudinal decorrelations.

Original languageEnglish
Article number024901
JournalPhysical Review C
Volume105
Issue number2
DOIs
StatePublished - 2022.02

Quacquarelli Symonds(QS) Subject Topics

  • Physics & Astronomy

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