We determine the axial, scalar and tensor isovector charges of the nucleon, sigma and cascade baryons as well as the difference between the up and down quark masses, mu−md. We employ gauge ensembles with Nf=2+1 non-perturbatively improved Wilson fermions at six values of the lattice spacing in the range a≈(0.039−0.098)fm, generated by the Coordinated Lattice Simulations (CLS) effort. The pion mass Mπ ranges from around 430MeV down to a near physical value of 130MeV and the linear spatial lattice extent L varies from 6.5Mπ−1 to 3.0Mπ−1, where LMπ≥4 for the majority of the ensembles. This allows us to perform a controlled interpolation/extrapolation of the charges to the physical mass point in the infinite volume and continuum limit. Investigating SU(3) flavour symmetry, we find moderate symmetry breaking effects for the axial charges at the physical quark mass point, while no significant effects are found for the other charges within current uncertainties.
@article{arxiv.2305.04717,
title = {Octet baryon isovector charges from $N_f = 2 + 1$ lattice QCD},
author = {Gunnar S. Bali and Sara Collins and Simon Heybrock and Marius Löffler and Rudolf Rödl and Wolfgang Söldner and Simon Weishäupl},
journal= {arXiv preprint arXiv:2305.04717},
year = {2023}
}
Comments
47 pages, 47 figures: v2: minor typos corrected, references added, some figures updated; v3: updated Fig. 11, version published in PRD