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arXiv:2602.14811·v4·High Energy Physics — Lattice

RG-Invariant Symmetry Ratio for QCD: A Study of and Chiral Symmetry Restoration

Ting-Wai Chiu🇺🇸 · Tung-Han Hsieh🇹🇼

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Abstract

We introduce a renormalization-group-invariant (RGI), scheme-independent symmetry ratio , for the quantitative characterization of symmetry breaking in QCD. As a first application, we employ to investigate the relative strength of chiral symmetry and axial symmetry breaking in lattice QCD using optimal domain-wall fermions at the physical point. Our study covers three lattice spacings and twelve temperatures in the range 164--385~MeV. We examine three independent symmetry-breaking channels in the nonsinglet sector with quark-connected correlators: the -sensitive scalar--pseudoscalar channel (), probing the -- system; the -sensitive vector--axial-vector channel (), probing the -- system; and an additional -sensitive tensor vector--axial-tensor vector channel (), probing the -- system. At finite lattice spacing, we observe a clear hierarchy . A controlled continuum extrapolation reveals that this hierarchy collapses, with all three symmetry-breaking strengths becoming statistically indistinguishable within our precision. This result provides a new, model-independent benchmark from a chirally symmetric lattice action. Our findings indicate that in the continuum limit the and channels in the nonsinglet sector reach degeneracy at the same temperature, already at the lowest simulated point of ~MeV, so that the two symmetries restore concurrently near the chiral crossover rather than at parametrically separated scales.

Comments: LaTeX, 50 pages, 4 figures, 12 Tables, v4:revised and expanded; compansion paper:arXiv:2607.17816

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