English

The elliptic flow difference between baryons and anti-baryons in heavy collision with SMASH Model

Nuclear Theory 2025-03-03 v2

Abstract

A significant difference in the elliptic flow v2v_2 for particles and their corresponding antiparticles, which is more pronounced for baryons and anti-baryons, was observed in the STAR experiment during the Beam Energy Scan I (BES-I) at RHIC. By employing the SMASH model, we study the v2v_2 difference between protons and anti-protons, as well as between Λ\Lambda and Λˉ\bar{\Lambda}, in Au + Au collisions at sNN=7.7\sqrt{s_{NN}} = 7.7 GeV as a function of evolution time. It finds that as the evolution time increases, the v2v_2 difference between protons and anti-protons becomes more pronounced compared to that between Λ\Lambda and Λˉ\bar{\Lambda}. This phenomenon can be explained by the different constituent quarks of protons and Λ\Lambda. Since some of the uu quarks and dd quarks come from the colliding nuclei and are transported to mid-rapidity, they undergo more interactions than produced quarks, resulting in the proton Δv2\Delta v_2 being larger than the Λ\Lambda Δv2\Delta v_2. We compare the SMASH calculations with STAR BES-I data and argue that higher precision data from BES-II will provide constraints on theoretical frameworks to interpret the v2v_2 differences of particles and anti-particles.

Keywords

Cite

@article{arxiv.2410.20765,
  title  = {The elliptic flow difference between baryons and anti-baryons in heavy collision with SMASH Model},
  author = {Shuai Zhou and Shusu Shi},
  journal= {arXiv preprint arXiv:2410.20765},
  year   = {2025}
}

Comments

6 pages, 4 figures