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Quantifying corrections to the hadron resonance gas with lattice QCD

Authors :
Bellwied, Rene
Borsányi, Szabolcs
Fodor, Zoltán
Guenther, Jana N.
Katz, Sándor D.
Parotto, Paolo
Pásztor, Attila
Pesznyák, Dávid
Ratti, Claudia
Szabó, Kálmán K.
Bellwied, Rene
Borsányi, Szabolcs
Fodor, Zoltán
Guenther, Jana N.
Katz, Sándor D.
Parotto, Paolo
Pásztor, Attila
Pesznyák, Dávid
Ratti, Claudia
Szabó, Kálmán K.
Publication Year :
2021

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 $N_\tau=8,10$ and $12$ 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 ($\mu_B$) - strangeness chemical potential ($\mu_S$) 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 $T_\mathrm{c}(\mu_B)$ at strangeness neutrality are able to reproduce trends of experimental net-proton fluctuations measured by the STAR Collaboration.<br />Comment: 10 pages, 4 figures, Contribution to the 38th International Symposium on Lattice Field Theory, LATTICE2021 26th-30th July, 2021

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1292079063
Document Type :
Electronic Resource