English

Quark spins and Anomalous Ward Identity

High Energy Physics - Phenomenology 2018-11-05 v2 High Energy Physics - Lattice

Abstract

We calculate the intrinsic quark spin contribution to the total proton spin using overlap valence quarks on three ensembles of 2+12+1-flavor RBC/UKQCD domain-wall configurations with different lattice spacings. The lowest pion mass of the ensembles is around 171 MeV which is close to the physical point. With overlap fermions and topological charge derived from the overlap operator, we verify the anomalous Ward identity between nucleon states with momentum transfer. Both the connected and disconnected insertions of the axial-vector current are calculated. For the disconnected-insertion part, the cluster-decomposition error reduction (CDER) technique is utilized for the lattice with the largest volume and the error can be reduced by 10%40%10\%\sim40\%. Nonperturbative renormalization is carried out and the final results are all reported in the MS\overline{{\rm MS}} scheme at 2 GeV. We determine the total quark spin contribution to the nucleon spin to be ΔΣ=0.401(25)(37)\Delta\Sigma=0.401(25)(37), which is consistent with the recent global fitting result of experimental data. The isovector axial coupling we obtain in this study is gA3=1.256(16)(30)g_A^3=1.256(16)(30), which agrees well with the experimental value of 1.2723(23).

Keywords

Cite

@article{arxiv.1806.08366,
  title  = {Quark spins and Anomalous Ward Identity},
  author = {Jian Liang and Yi-Bo Yang and Terrence Draper and Ming Gong and Keh-Fei Liu},
  journal= {arXiv preprint arXiv:1806.08366},
  year   = {2018}
}

Comments

37 pages, 16 figures, matched to the version accepted by PRD

R2 v1 2026-06-23T02:37:37.588Z