arXiv:2508.05446·v2·High Energy Physics — Lattice
Non-perturbative determination of meson masses and low-energy constants in large- QCD
Claudio Bonanno🇪🇸 · Margarita García Pérez🇪🇸 · Antonio González-Arroyo🇪🇸 · Ken-Ichi Ishikawa🇯🇵 · Masanori Okawa🇯🇵
Abstract
We provide first-principles non-perturbative determinations of the low-lying meson mass spectrum of large- QCD in the 't Hooft limit , as well as of three low-energy constants appearing in the QCD chiral expansion: the quark condensate , the pion decay constant , and the next-to-leading-order coupling . Using the excited state masses in the and channels, we are able to investigate the behavior of their radial Regge trajectories. Concerning QCD low-energy constants, we are able to assess the magnitude of sub-leading corrections in by combining our results with previous finite- determinations. Our calculation exploits large- twisted volume reduction to efficiently perform numerical Monte Carlo simulations of the large- lattice discretized theory. We employ several values of up to , 5 values of the lattice spacing, and several values of the quark mass, to achieve controlled continuum and chiral extrapolations.
Comments: 54 pages, 18 figures. v2: minor changes and typos corrected, 1 appendix added, matches published version on JHEP