Finite density QCD equation of state: critical point and lattice-based $T'$-expansion
Abstract
We present a novel construction of the QCD equation of state (EoS) at finite baryon density. Our work combines a recently proposed resummation scheme for lattice QCD results with the universal critical behavior at the QCD critical point. This allows us to obtain a family of equations of state in the range MeV and 25 MeV MeV, which match lattice QCD results near while featuring a critical point in the 3D Ising model universality class. The position of the critical point can be chosen within the range accessible to beam-energy scan heavy-ion collision experiments. The strength of the singularity and the shape of the critical region are parameterized using a standard parameter set. We impose stability and causality constraints and discuss the available ranges of critical point parameter choices, finding that they extend beyond earlier parametric QCD EoS proposals. We present thermodynamic observables, including baryon density, pressure, entropy density, energy density, baryon susceptibility and speed of sound, that cover a wide range in the QCD phase diagram relevant for experimental exploration.
Keywords
Cite
@article{arxiv.2402.08636,
title = {Finite density QCD equation of state: critical point and lattice-based $T'$-expansion},
author = {Micheal Kahangirwe and Steffen A. Bass and Elena Bratkovskaya and Johannes Jahan and Pierre Moreau and Paolo Parotto and Damien Price and Claudia Ratti and Olga Soloveva and Mikhail Stephanov},
journal= {arXiv preprint arXiv:2402.08636},
year = {2024}
}
Comments
16 pages, 18 figures