arXiv:2112.02402·v1·High Energy Physics — Lattice
Quantifying corrections to the hadron resonance gas with lattice QCD
Rene Bellwied🇺🇸 · Szabolcs Borsányi🇩🇪 · Zoltán Fodor🇩🇪 · Jana N. Guenther🇿🇦 · Sándor D. Katz🇭🇺 · Paolo Parotto🇩🇪 · Attila Pásztor🇭🇺 · Dávid Pesznyák🇭🇺 · Claudia Ratti🇺🇸 · Kálmán K. Szabó🇭🇺
Abstract
The hadron resonance gas (HRG) model and its extensions are often used to describe the hadronic phase of strongly interacting matter. In our work we use lattice-QCD simulations with temporal extents of and to quantify corrections to the ideal HRG. Firstly, we determine a number of subleading fugacity expansion coefficients of the QCD free energy via a two-dimensional scan on the imaginary baryon number chemical potential () - strangeness chemical potential () plane. Using the aforementioned coefficients, we also extrapolate ratios of baryon number and strangeness fluctuations and correlations to finite chemical potentials via a truncated fugacity expansion. Our results extrapolated along the crossover line at strangeness neutrality are able to reproduce trends of experimental net-proton fluctuations measured by the STAR Collaboration.
Comments: 10 pages, 4 figures, Contribution to the 38th International Symposium on Lattice Field Theory, LATTICE2021 26th-30th July, 2021