English

Lattice Calculation of Nucleon Isovector Axial Charge with Improved Currents

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

Abstract

We employ dimension-4 operators to improve the local vector and axial-vector currents and calculate the nucleon isovector axial coupling gA3g^3_A with overlap valence on 2+12+1-flavor Domain Wall Fermion sea. Using the equality of gA3g^3_A from the spatial and temporal components of the axial-vector current as a normalization condition, we find that gA3g_A^3 is increased by a few percent towards the experimental value. The excited-state contamination has been taken into account with three time separations between the source and sink. The improved axial charges gA3(24I)=1.22(4)g_A^{3}(24I)=1.22(4) and gA3(32I)=1.21(3)g_A^{3}(32I)=1.21(3) are obtained on a 243×6424^3\times 64 lattice at pion mass of 330 MeV and a 323×6432^3\times 64 lattice at pion mass 300 MeV are increased by 3.4%3.4\% and 1.7%1.7\% from their unimproved values, respectively. We have also used clover fermion on the same DWF configurations and find the same behavior for the local axial charge as that of the overlap fermion.

Keywords

Cite

@article{arxiv.1612.04388,
  title  = {Lattice Calculation of Nucleon Isovector Axial Charge with Improved Currents},
  author = {Jian Liang and Yi-Bo Yang and Keh-Fei Liu and Andrei Alexandru and Terrence Draper and Raza Sabbir Sufian},
  journal= {arXiv preprint arXiv:1612.04388},
  year   = {2018}
}

Comments

25 pages, 11 figures, matched to the version accepted by PRD