English

Up, down, and strange nucleon axial form factors from lattice QCD

High Energy Physics - Lattice 2017-06-19 v2 High Energy Physics - Phenomenology Nuclear Theory

Abstract

We report a calculation of the nucleon axial form factors GAq(Q2)G_A^q(Q^2) and GPq(Q2)G_P^q(Q^2) for all three light quark flavors q{u,d,s}q\in\{u,d,s\} in the range 0Q21.2 GeV20\leq Q^2\lesssim 1.2\text{ GeV}^2 using lattice QCD. This work was done using a single ensemble with pion mass 317 MeV and made use of the hierarchical probing technique to efficiently evaluate the required disconnected loops. We perform nonperturbative renormalization of the axial current, including a nonperturbative treatment of the mixing between light and strange currents due to the singlet-nonsinglet difference caused by the axial anomaly. The form factor shapes are fit using the model-independent zz expansion. From GAq(Q2)G_A^q(Q^2), we determine the quark contributions to the nucleon spin and axial radii. By extrapolating the isovector GPud(Q2)G_P^{u-d}(Q^2), we obtain the induced pseudoscalar coupling relevant for ordinary muon capture and the pion-nucleon coupling constant. We find that the disconnected contributions to GPG_P form factors are large, and give an interpretation based on the dominant influence of the pseudoscalar poles in these form factors.

Keywords

Cite

@article{arxiv.1703.06703,
  title  = {Up, down, and strange nucleon axial form factors from lattice QCD},
  author = {Jeremy Green and Nesreen Hasan and Stefan Meinel and Michael Engelhardt and Stefan Krieg and Jesse Laeuchli and John Negele and Kostas Orginos and Andrew Pochinsky and Sergey Syritsyn},
  journal= {arXiv preprint arXiv:1703.06703},
  year   = {2017}
}

Comments

29 pages, 17 figures. v2: additional comparison with phenomenology and discussion of systematics; new appendix with fit parameters