English

Collective Flow Measurements from the PHENIX Experiment

Nuclear Experiment 2019-08-14 v1

Abstract

Recent collective flow measurements including higher moment event anisotropy from the PHENIX experiment are presented, and the particle type, beam energy dependence and the relation with jet modification are discussed. The measured higher order event anisotropy with event plane defined at forward rapidities and the long range correlation with large η\eta gaps are both consistent with initial geometrical fluctuation of the participating nuclei. In 200 GeV Au+Au collisions, higher order event anisotropy, especially simultaneous description of v2_2 and v3_3, is found to give an additional constraining power on initial geometrical condition and viscosity in the hydrodynamic calculations. v2_2, v3_3 and v4_4 are almost unchanged down to the lower colliding energy at 39 GeV in Au+Au. The measured two particle correlation with subtraction of the measured vn_n parameters shows a significant effect on the shape and yield in the associate particle Δϕ\Delta\phi distribution with respect to the azimuthal direction of trigger particles. However some medium responses from jet suppression or jet modification seems to be observed. Direct photon v2_2 has been measured in 200 GeV Au+Au collisions. The measured v2_2 is found to be small at high pT_{\rm T} as expected from non-suppressed direct photon RAA_{\rm AA} \simeq 1, which can be understood as being dominated by prompt photons from initial hard scattering. On the other hand, at lower pT_{\rm T} << 4 GeV/c it is found to be significantly larger than zero, which is comparable to other hadron v2_2, where thermal photons are observed.

Keywords

Cite

@article{arxiv.1110.3223,
  title  = {Collective Flow Measurements from the PHENIX Experiment},
  author = {ShinIchi Esumi},
  journal= {arXiv preprint arXiv:1110.3223},
  year   = {2019}
}

Comments

8 pages, 10 figures, Quark Matter 2011 proceedings

R2 v1 2026-06-21T19:20:21.761Z