English

Symmetries of spatial meson correlators in high temperature QCD

High Energy Physics - Lattice 2019-07-17 v2 High Energy Physics - Phenomenology High Energy Physics - Theory Nuclear Theory

Abstract

Based on a complete set of J=0J = 0 and J=1J=1 spatial isovector correlation functions calculated with NF=2N_F = 2 domain wall fermions we identify an intermediate temperature regime of T220500T \sim 220 - 500 MeV (1.2Tc1.2T_c--2.8Tc2.8T_c), where chiral symmetry is restored but the correlators are not yet compatible with a simple free quark behavior. More specifically, in the temperature range T220500T \sim 220 - 500 MeV we identify a multiplet structure of spatial correlators that suggests emergent SU(2)CSSU(2)_{CS} and SU(4)SU(4) symmetries, which are not symmetries of the free Dirac action. The symmetry breaking effects in this temperature range are less than 5%. Our results indicate that at these temperatures the chromo-magnetic interaction is suppressed and the elementary degrees of freedom are chirally symmetric quarks bound into color-singlet objects by the chromo-electric component of the gluon field. At temperatures between 500 and 660 MeV the emergent SU(2)CSSU(2)_{CS} and SU(4)SU(4) symmetries disappear and one observes a smooth transition to the regime above T1T \sim 1 GeV where only chiral symmetries survive, which are finally compatible with quasi-free quarks.

Keywords

Cite

@article{arxiv.1902.03191,
  title  = {Symmetries of spatial meson correlators in high temperature QCD},
  author = {C. Rohrhofer and Y. Aoki and G. Cossu and H. Fukaya and C. Gattringer and L. Ya. Glozman and S. Hashimoto and C. B. Lang and S. Prelovsek},
  journal= {arXiv preprint arXiv:1902.03191},
  year   = {2019}
}

Comments

A new figure and discussion added. Accepted for publication in PRD