arXiv Analytics

Sign in

arXiv:2310.16345 [hep-ph]AbstractReferencesReviewsResources

Constructing the Equation of State of QCD in a functional QCD based scheme

Yi Lu, Fei Gao, Bao-Chi Fu, Hui-Chao Song, Yu-Xin Liu

Published 2023-10-25Version 1

We construct the equation of state (EoS) of QCD based on the finite chemical potential information from the functional QCD approaches, with the assistance of the lattice QCD EoS. The obtained EoS is consistent with the up-to-date estimations of the QCD phase diagram, including a phase transition temperature at zero chemical potential of $T=157$ MeV, the curvature of the transition line $\kappa=0.016$ and also a critical end point at $(T,\mu_B)=(118, 600)$ MeV. In specific, the phase diagram mapping is achieved by incorporating the order parameters into the EoS, namely the dynamical quark mass for the chiral phase transition together with the Polyakov loop parameter for the deconfinement phase transition. We also implement the EoS in hydrodynamic simulations to compute the particle yields, ratios and collective flow, and find that our obtained EoS agrees well with the commonly used one based on the combination of lattice QCD simulation and hadron resonance gas model.

Related articles: Most relevant | Search more
arXiv:hep-ph/0410329 (Published 2004-10-25)
The influence of strange quarks on QCD phase diagram and chemical freeze-out: Results from the hadron resonance gas model
arXiv:hep-ph/0409310 (Published 2004-09-27)
The QCD phase diagram at nonzero baryon, isospin and strangeness chemical potentials: Results from a hadron resonance gas model
arXiv:1607.01875 [hep-ph] (Published 2016-07-07)
Resonance decay effect on conserved number fluctuations in a hadron resonance gas model