PaperPanorama

arXiv:2604.11916·v1·High Energy Physics — Lattice

On the effective restoration of symmetry at finite temperature

Gert Aarts🇬🇧 · Chris Allton🇬🇧 · Ryan Bignell🇮🇪 · Benjamin Jäger🇩🇰 · Seyong Kim🇰🇷 · Jon-Ivar Skullerud🇮🇪 · Antonio Smecca🇮🇹

PDFarXivINSPIRE

Abstract

The symmetry of the massless QCD Lagrangian is explicitly broken by the axial anomaly, but it may be effectively restored at finite temperature. Determining the temperature at which this occurs is important for understanding the chiral transition and the structure of the QCD phase diagram. A commonly used probe of effective restoration is the degeneracy of flavour non-singlet pseudoscalar and scalar susceptibilities. Using anisotropic lattice QCD ensembles with Wilson-clover fermions generated by the \textsc{Fastsum} collaboration, we study this degeneracy through hadronic correlation functions over a wide range of temperatures. The fine temporal resolution of our Generation 3 ensembles allows us to determine the temperature at which the pseudoscalar and scalar channels become degenerate. We find evidence for the effective restoration of symmetry at MeV, well above the chiral crossover temperature.

Comments: 12 pages, 11 figures

Citation historyopen in Citation History ↗