We calculate a resummed equation of state with lattice QCD simulations at imaginary chemical potentials. This work presents a generalization of the scheme introduced in [Phys. Rev. Lett. 126, 232001 (2021) to the case of nonzero mu(s), focusing on the line of strangeness neutrality. We present results up to mu(B)/T <= 3.5 on the strangeness neutral line < S > = 0 in the temperature range 130 MeV <= T <= 280 MeV. We also extrapolate the finite baryon density equation of state to small nonzero values of the strangeness-to-baryon ratio R = < S > / < B >. We perform a continuum extrapolation using lattice simulations of the 4stout-improved staggered action with 8, 10, 12 and 16 time slices.

Resummed lattice QCD equation of state at finite baryon density: Strangeness neutrality and beyond

Paolo Parotto;Claudia Ratti;
2022-01-01

Abstract

We calculate a resummed equation of state with lattice QCD simulations at imaginary chemical potentials. This work presents a generalization of the scheme introduced in [Phys. Rev. Lett. 126, 232001 (2021) to the case of nonzero mu(s), focusing on the line of strangeness neutrality. We present results up to mu(B)/T <= 3.5 on the strangeness neutral line < S > = 0 in the temperature range 130 MeV <= T <= 280 MeV. We also extrapolate the finite baryon density equation of state to small nonzero values of the strangeness-to-baryon ratio R = < S > / < B >. We perform a continuum extrapolation using lattice simulations of the 4stout-improved staggered action with 8, 10, 12 and 16 time slices.
2022
105
11
114504
114519
Szabolcs Borsányi; Jana N. Guenther; Ruben Kara; Zoltán Fodor; Paolo Parotto; Attila Pásztor; Claudia Ratti; Kálmán Szabó
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/1947492
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