Symmetries of meson correlators in high temperature QCD with physical domain-wall quarks
arXiv:2302.06073 · doi:10.1103/PhysRevD.107.114501
Abstract
The correlation function of meson interpolators in lattice QCD with optimal domain-wall quarks at the physical point are studied for six temperatures in the range 190-770 MeV. The meson interpolators include a complete set of Dirac bilinears, and each for six combinations of quark flavors. In this paper, we focus on the meson correlators of and quarks, and discuss their implications for the effective restoration of and chiral symmetries, as well as the emergence of the approximate chiral spin symmetry.
44 pages, v2: published version
References in corpus (6)
- Infinite N phase transitions in continuum Wilson loop operators
- Symmetries of spatial meson correlators in high temperature QCD
- SU(4) symmetry of the dynamical QCD string and genesis of hadron spectra
- Pion spectral properties above the chiral crossover of QCD
- Chiral Symmetry and the Residual Mass in Lattice QCD with the Optimal Domain-Wall Fermion
- Topological susceptibility in finite temperature QCD with physical domain-wall quarks
Cited by in corpus (5)
- Centre vortex evidence for a second finite-temperature QCD transition
- Symmetries of spatial correlators of light and heavy mesons in high temperature lattice QCD
- Symmetry of screening masses of mesons in two-flavor lattice QCD at high temperatures
- Symmetries in high-temperature lattice QCD with (u, d, s, c, b) optimal domain-wall quarks
- Confined but chirally and chiral spin symmetric hot matter