English

Lattice QCD constraints on the critical point from an improved precision equation of state

High Energy Physics - Lattice 2025-02-18 v1 Nuclear Theory

Abstract

In this Letter we employ lattice simulations to search for the critical point of quantum chromodynamics (QCD). We search for the onset of a first order QCD transition on the phase diagram by following contours of constant entropy density from imaginary to real chemical potentials under conditions of strangeness neutrality. We scan the phase diagram and investigate whether these contours meet to determine the probability that the critical point is located in a certain region on the TμBT-\mu_B plane. To achieve this we introduce a new, continuum extrapolated equation of state at zero density with improved precision using lattices with Nτ=8,10,12,16N_\tau=8,10,12,16 timeslices, and supplement it with new data at imaginary chemical potential. The current precision allows us to exclude, at the 2σ2\sigma level, the existence of a critical point at μB<450\mu_B < 450~MeV.

Keywords

Cite

@article{arxiv.2502.10267,
  title  = {Lattice QCD constraints on the critical point from an improved precision equation of state},
  author = {Szabolcs Borsanyi and Zoltan Fodor and Jana N. Guenther and Paolo Parotto and Attila Pasztor and Claudia Ratti and Volodymyr Vovchenko and Chik Him Wong},
  journal= {arXiv preprint arXiv:2502.10267},
  year   = {2025}
}

Comments

7 + 5 Pages with a Supplemental Material in the same file