English

The equation of state in (2+1)-flavor QCD

High Energy Physics - Lattice 2015-06-22 v2 High Energy Physics - Phenomenology Nuclear Theory

Abstract

We present results for the equation of state in (2+1)-flavor QCD using the highly improved staggered quark action and lattices with temporal extent Nτ=6, 8, 10N_{\tau}=6,~8,~10, and 1212. We show that these data can be reliably extrapolated to the continuum limit and obtain a number of thermodynamic quantities and the speed of sound in the temperature range (130400)(130-400) MeV. We compare our results with previous calculations, and provide an analytic parameterization of the pressure, from which other thermodynamic quantities can be calculated, for use in phenomenology. We show that the energy density in the crossover region, 145 MeVT163145~ {\rm MeV} \leq T \leq 163 MeV, defined by the chiral transition, is ϵc=(0.180.5) GeV/fm3\epsilon_c=(0.18-0.5)~{\rm GeV}/{\rm fm}^3, i.e.i.e., (1.23.1) ϵnuclear(1.2-3.1)\ \epsilon_{\rm nuclear}. At high temperatures, we compare our results with resummed and dimensionally reduced perturbation theory calculations. As a byproduct of our analyses, we obtain the values of the scale parameters r0r_0 from the static quark potential and w0w_0 from the gradient flow.

Keywords

Cite

@article{arxiv.1407.6387,
  title  = {The equation of state in (2+1)-flavor QCD},
  author = {A. Bazavov and Tanmoy Bhattacharya and C. DeTar and H. -T. Ding and Steven Gottlieb and Rajan Gupta and P. Hegde and U. M. Heller and F. Karsch and E. Laermann and L. Levkova and Swagato Mukherjee and P. Petreczky and C. Schmidt and C. Schroeder and R. A. Soltz and W. Soeldner and R. Sugar and M. Wagner and P. Vranas},
  journal= {arXiv preprint arXiv:1407.6387},
  year   = {2015}
}

Comments

Minor modifications, published version