English

Chemical Freeze-out Parameters via a Non-perturbative QCD Approach

High Energy Physics - Phenomenology 2023-05-29 v1

Abstract

By analyzing the calculated baryon number susceptibility ratios χ1B/χ2B{\chi_{1}^{B}}/{\chi_{2}^{B}} and χ3B/χ1B{\chi_{3}^{B}}/{\chi_{1}^{B}} in two-flavor system via the Dyson-Schwinger equation approach of QCD, we determine the chemical freeze-out temperature and baryon chemical potential in cases of both thermodynamic limit and finite size. We calculate the center-of-mass energy dependence of the χ4B/χ2B(κσ2){\chi_{4}^{B}}/{\chi_{2}^{B}}\, (\kappa \sigma^{2}) at the freeze-out line and find an excellent agreement with experimental data when taking into account the finite size effect. Our calculations indicate that the κσ2\kappa \sigma^{2} exhibits a nonmonotonic behavior in lower collision energy region. We also predict that the collision energy dependence of χ6B/χ2B{\chi_{6}^{B}}/{\chi_{2}^{B}} is nonmonotonic.

Keywords

Cite

@article{arxiv.2109.09912,
  title  = {Chemical Freeze-out Parameters via a Non-perturbative QCD Approach},
  author = {Yi Lu and Muyang Chen and Zhan Bai and Fei Gao and Yu-xin Liu},
  journal= {arXiv preprint arXiv:2109.09912},
  year   = {2023}
}

Comments

9 pages, 6 figures. Extension of arXiv:1510.07543