We present our progress on the computation of the axial form factor of the nucleon with flavour structure u+d−2s from lattice QCD. We employ a set of Nf=2+1 CLS ensembles with O(a)-improved Wilson fermions and the L\"uscher-Weisz gauge action, with lattice spacings ranging from 0.05fm to 0.086fm and pion masses spanning between 130MeV and 350MeV. We employ multiple source-sink separations and use the summation method to suppress the contamination from excited states. We use a z-expansion on each ensemble to parametrize the Q2-dependence of the form factor and simultaneously fit the available source-sink separations for all Q2≤0.7GeV2. We outline our analysis of the stability of the fits varying the ans\"atze and different estimations of the covariance matrix and report on our strategy for a comprehensive determination of the physical form factor.
@article{arxiv.2502.06305,
title = {The isoscalar non-singlet axial form factor of the nucleon from lattice QCD},
author = {Alessandro Barone and Dalibor Djukanovic and Georg von Hippel and Jonna Koponen and Harvey B. Meyer and Konstantin Ottnad and Hartmut Wittig},
journal= {arXiv preprint arXiv:2502.06305},
year = {2025}
}
Comments
10 pages, 5 figures. Proceedings of the 41st International Symposium on Lattice Field Theory (Lattice 2024), University of Liverpool, UK, 2024