Measurements of second-harmonic Fourier coefficients from azimuthal anisotropies in , Au, Au, and HeAu collisions at GeV
arXiv:2203.09894 · doi:10.1103/PhysRevC.107.024907
Abstract
Recently, the PHENIX Collaboration has published second- and third-harmonic Fourier coefficients and for midrapidity () charged hadrons in 0\%--5\% central Au, Au, and HeAu collisions at GeV utilizing three sets of two-particle correlations for two detector combinations with different pseudorapidity acceptance [Phys. Rev. C {\bf 105}, 024901 (2022)]. This paper extends these measurements of to all centralities in Au, Au, and HeAu collisions, as well as collisions, as a function of transverse momentum () and event multiplicity. The kinematic dependence of is quantified as the ratio of between the two detector combinations as a function of event multiplicity for and GeV/. A multiphase-transport (AMPT) model can reproduce the observed in most-central to midcentral Au and HeAu collisions. However, the AMPT model systematically overestimates the measurements in , Au, and peripheral Au and HeAu collisions, indicating a higher nonflow contribution in AMPT than in the experimental data. The AMPT model fails to describe the observed for GeV/, but there is qualitative agreement with the measurements for GeV/.
393 authors from 72 institutions, 14 pages, 10 figures, 2014, 2015, and 2016 data. v2 is version accepted for publication in Physical Review C. HEPdata tables for the points plotted in figures for this and previous PHENIX publications are (or will be) publicly available at http://www.phenix.bnl.gov/papers.html