Strangeness-neutral equation of state for QCD with a critical point.

ORAL

Abstract

We construct a family of equations of state for QCD in the temperature range 30$\le $T$\le $800 MeV and in the chemical potential range 0$\le \mu $B$\le $450 MeV [1]. These equations of state match available lattice QCD results up to O($\mu $B\textasciicircum 4) and in each of them we place a critical point in the 3D Ising model universality class. Our results for the pressure, entropy density, baryon density, energy density and speed of sound can be used as inputs in the hydrodynamical simulations of the fireball created in heavy ion collisions. We follow the approach presented in Ref. [2], but we extend it to a more realistic scenario, which reflects the net-strangeness and net-electric charge content of the colliding nuclei in heavy-ion collisions. [1] J. M. Karthein, D. Mroczek, A. R. Nava Acuna, J. Noronha-Hostler, P. Parotto, D. Price, C. Ratti, Eur.Phys.J.Plus 136 (2021) 6, 621. [2] P. Parotto, M. Bluhm, D. Mroczek, M. Nahrgang, J. Noronha-Hostler, K. Rajagopal, C. Ratti, T. Schaefer, M. Stephanov, Phys. Rev. C101 (2020) 034901.

*This research is supported in part by the National Science Foundation Limit (Grant n. PHY-1654219) and in part by the U.S. Department of Energy, Office of Science, Office of Nuclear Physics, within the framework of the Beam Energy Scan Theory (BEST) Topical Collaboration.

Authors

  • Damien Price

    • University of Houston
  • Jamie Karthein

    • University of Houston
  • Angel Nava Acuna

    • University of Houston
  • Claudia Ratti

    • University of Houston
  • Deborah Mroczek

    • University of Illinois at Urbana-Champaign
  • Jacquelyn Noronha-Hostler

    • University of Illinois at Urbana-Champaign
  • Paolo Parotto

    • University of Wuppertal