Strangeness-Correlations on the pseudo-critical line in (2+1)-flavor QCD
Abstract
We present some lattice QCD results on first () and second () cumulants of and correlations () among net baryon-number (), strangeness () and electric charge () along the pseudo-critical line () in the temperature ()--baryon chemical potential () 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 for the entire range of covered in the RHIC beam energy scan. For the strangeness neutral matter produced in heavy-ion collisions this leads to a close relation between and . We compare lattice QCD results for along the line with preliminary experimental measurements of for collision energies . While we find good agreements for ~GeV, differences are sizeable at smaller values of . Moreover, we compare lattice QCD results for the ratio of the strangeness () to baryon () 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 using strange baryon yields on the freeze-out line. Finally, we determine the baryon chemical potential at the freeze-out () by comparing along the with the experimentally measured net-proton cumulants . We find that are consistent with the freeze-out parameters of the statistical-model fits to experimentally measured hadron yields for 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