English

Bayesian analysis of properties of nuclear matter with the FOPI experimental data

Nuclear Theory 2025-09-04 v1

Abstract

Based on the ultra-relativistic quantum molecular dynamics (UrQMD) transport model, combined with experimental data of directed flow, elliptic flow, and nuclear stopping power measured by FOPI in 197Au+197Au\rm ^{197}Au+^{197}Au collisions at beam energies (ElabE_{lab}) of 0.25 and 0.4 GeV/nucleon, the incompressibility of the nuclear equation of state K0K_0, the nucleon effective mass mm^*, and the in-medium correction factor (FF, with respect to free-space values) on the nucleon-nucleon elastic cross sections are studied by Bayesian analysis. It is found that both mm^* and FF can be tightly constrained with the uncertainty \le 15\%, however, K0K_0 cannot be constrained tightly. We deduce m/m0=0.780.10+0.09m^*/m_0 = 0.78^{+0.09}_{-0.10} and F=0.750.07+0.08F = 0.75^{+0.08}_{-0.07} with experimental data at ElabE_{lab} = 0.25 GeV/nucleon, and the obtained values increased to m/m0=0.880.03+0.03m^*/m_0 = 0.88^{+0.03}_{-0.03} and F=0.880.07+0.06F = 0.88^{+0.06}_{-0.07} at ElabE_{lab} = 0.4 GeV/nucleon. The obtained results are further verified with rapidity-dependent flow data.

Keywords

Cite

@article{arxiv.2509.03406,
  title  = {Bayesian analysis of properties of nuclear matter with the FOPI experimental data},
  author = {Guojun Wei and Manzi Nan and Pengcheng Li and Yongjia Wang and Qingfeng Li and Gaochan Yong and Fuhu Liu},
  journal= {arXiv preprint arXiv:2509.03406},
  year   = {2025}
}

Comments

10 pages, 7 figures