English

Strangeness-Correlations on the pseudo-critical line in (2+1)-flavor QCD

High Energy Physics - Lattice 2024-10-03 v2 High Energy Physics - Phenomenology

Abstract

We present some lattice QCD results on first (χ1i\chi_1^i) and second (χ2i\chi_2^i) cumulants of and correlations (χ11ij\chi_{11}^{ij}) among net baryon-number (BB), strangeness (SS) and electric charge (QQ) along the pseudo-critical line (Tpc(μB)T_{pc}(\mu_B)) in the temperature (TT)--baryon chemical potential (μB\mu_B) phase diagram of (2+1)-flavor QCD. We point out that violations of the isospin symmetric limit of vanishing electric charge chemical potential are small along the Tpc(μB)T_{pc}(\mu_B) for the entire range of μB\mu_B covered in the RHIC beam energy scan. For the strangeness neutral matter produced in heavy-ion collisions this leads to a close relation between χ11BS\chi_{11}^{BS} and χ11QS\chi_{11}^{QS}. We compare lattice QCD results for χ11BS/χ2S\chi_{11}^{BS}/\chi_2^S along the Tpc(μB)T_{pc}(\mu_B) line with preliminary experimental measurements of χ11BS/χ2S\chi_{11}^{BS}/\chi_2^S for collision energies 7.7 GeVsNN62.4 GeV7.7~{\rm GeV}\le \sqrt{s_{_{NN}}}\le 62.4~{\rm GeV}. While we find good agreements for sNN39\sqrt{s_{_{NN}}}\ge 39~GeV, differences are sizeable at smaller values of sNN\sqrt{s_{_{NN}}}. Moreover, we compare lattice QCD results for the ratio of the strangeness (μS\mu_S) to baryon (μB\mu_B) chemical potentials, which define a strangeness neutral system with fixed electric charge to baryon number density, with experimental results obtained by the STAR collaboration for μS/μB\mu_S/\mu_B using strange baryon yields on the freeze-out line. Finally, we determine the baryon chemical potential at the freeze-out (μBf\mu_B^f) by comparing χ1B/χ2B\chi_1^B/\chi_2^B along the Tpc(μB)T_{pc}(\mu_B) with the experimentally measured net-proton cumulants χ1p/χ2p\chi_1^p/\chi_2^p. We find that {μBf,Tpc(μBf)}\{\mu_B^f, T_{pc}(\mu_B^f) \} are consistent with the freeze-out parameters of the statistical-model fits to experimentally measured hadron yields for sNN11.5\sqrt{s_{_{NN}}} \geq 11.5 GeV.

Keywords

Cite

@article{arxiv.2407.09335,
  title  = {Strangeness-Correlations on the pseudo-critical line in (2+1)-flavor QCD},
  author = {D. Bollweg and H. -T. Ding and J. Goswami and F. Karsch and Swagato Mukherjee and P. Petreczky and C. Schmidt},
  journal= {arXiv preprint arXiv:2407.09335},
  year   = {2024}
}

Comments

9 pages, 6 figures