First-order event plane correlated directed and triangular flow from fixed-target energies at RHIC-STAR
Abstract
We report the measurement of first-order event plane correlated directed flow and triangular flow for identified hadrons (, , and ), net-particle (net-K, net-p), and light nuclei ( and ) in Au+Au collisions at = 3.2, 3.5, and 3.9 GeV in fixed-target mode from the second phase of beam energy scan (BES-II) program at RHIC-STAR. The slopes at mid-rapidity for identified hadrons and net-particles except are found to be positive, implying the effect of dominant repulsive baryonic interactions. The slope of for net-kaon undergoes a sign change from negative to positive at a lower collision energy compared to net-proton. An approximate atomic mass number scaling is observed in the measured slopes of light nuclei at mid-rapidity, which favours the nucleon coalescence mechanism for the production of light nuclei. The slope for all particles decreases in magnitude with increasing collision energy, suggesting a notable integrated impact of the mean-field, baryon stopping, and collision geometry at lower collision energies.
Keywords
Cite
@article{arxiv.2312.02666,
title = {First-order event plane correlated directed and triangular flow from fixed-target energies at RHIC-STAR},
author = {Sharang Rav Sharma},
journal= {arXiv preprint arXiv:2312.02666},
year = {2023}
}
Comments
arXiv admin note: text overlap with arXiv:1402.3818 by other authors