Baseline predictions of elliptic flow and fluctuations for the RHIC Beam Energy Scan using response coefficients

被引:18
|
作者
Rao, S. [1 ]
Sievert, M. [2 ]
Noronha-Hostler, J. [3 ]
机构
[1] Rutgers State Univ, Piscataway, NJ 08854 USA
[2] New Mexico State Univ, Dept Phys, Las Cruces, NM 88003 USA
[3] Univ Illinois, Urbana, IL 61801 USA
基金
美国能源部;
关键词
PROTON-LEAD COLLISIONS; FREEZE-OUT CONDITIONS; QCD; MOMENTUM; TEV;
D O I
10.1103/PhysRevC.103.034910
中图分类号
O57 [原子核物理学、高能物理学];
学科分类号
070202 ;
摘要
Currently the Relativistic Heavy Ion Collider (RHIC) Beam Energy Scan is exploring a new region of the quantum chromodynamic phase diagram at large baryon densities that approaches nuclear astrophysics regimes. This provides an opportunity to study relativistic hydrodynamics in a regime where the net conserved charges of baryon number, strangeness, and electric charge play a role, which will significantly change the theoretical approach to simulating the baryon-dense quark-gluon plasma. Here we detail many of the important changes needed to adapt both initial conditions and the medium to baryon-rich matter. Then, we make baseline predictions (i.e., assuming a high-energy approach) for the elliptical flow and fluctuations based on extrapolating the physics at Large Hadron Collider and top RHIC energies to support future analyses of where and how the new baryon-dense physics causes these extrapolations to break down. First we compare eccentricities across beam energies, exploring their underlying assumptions; we find the extrapolated initial state is predicted to be nearly identical to that at AuAu root s(NN) = 200 GeV. Then we make exploratory predictions of the final flow harmonic based on linear + cubic response. We discuss preliminary STAR results in order to determine the implications that they have for linear + cubic response coefficients at the lowest beam energy of AuAu root s(NN) = 7 GeV.
引用
收藏
页数:17
相关论文
共 50 条
  • [41] PHENIX results on fluctuations and Bose-Einstein correlations in Au plus Au collisions from the RHIC Beam Energy Scan
    Garg, Prakhar
    NUCLEAR PHYSICS A, 2016, 956 : 369 - 372
  • [42] System size, energy and pseudorapidity dependence of directed and elliptic flow at RHIC
    Manly, S.
    NUCLEAR PHYSICS A, 2006, 774 : 523 - 526
  • [43] Core-corona model analysis of the low energy beam scan at RHIC
    Gemard, M.
    Aichelin, J.
    ASTRONOMISCHE NACHRICHTEN, 2014, 335 (6-7) : 660 - 665
  • [44] Overview of results from phase I of the Beam Energy Scan program at RHIC
    McDonald, Daniel
    3RD INTERNATIONAL CONFERENCE ON NEW FRONTIERS IN PHYSICS, 2015, 95
  • [45] Directed flow and global polarization in Au plus Au collisions across energies covered by the beam energy scan at RHIC
    Jiang, Ze-Fang
    Wu, Xiang -Yu
    Cao, Shanshan
    Zhang, Ben -Wei
    PHYSICAL REVIEW C, 2023, 107 (03)
  • [46] Chemical freeze-out parameters in Beam Energy Scan Program of STAR at RHIC
    Das, Sabita
    XLIV INTERNATIONAL SYMPOSIUM ON MULTIPARTICLE DYNAMICS (ISMD 2014), 2015, 90
  • [47] π-J/ψ correlation and elliptic flow parameter υ2 of charmed mesons at RHIC energy
    Peng Ru
    Yang Chun-Bin
    CHINESE PHYSICS C, 2011, 35 (05) : 453 - 458
  • [48] Effects of EoS in viscous hydro plus cascade model for the RHIC Beam Energy Scan
    Karpenko, Iu.
    Bleicher, M.
    Huovinen, P.
    Petersen, H.
    NUCLEAR PHYSICS A, 2016, 956 : 834 - 837
  • [49] Beam Energy Scan program at RHIC-experimental approach to the QCD Phase Diagram
    Odyniec, G.
    PHYSICS OF ATOMIC NUCLEI, 2012, 75 (05) : 602 - 606
  • [50] Study of freeze-out dynamics in STAR at RHIC Beam Energy Scan Program
    Das, Sabita
    14TH INTERNATIONAL CONFERENCE ON STRANGENESS IN QUARK MATTER (SQM2013), 2014, 509