English

Nucleon axial charge and pion decay constant from two-flavor lattice QCD

High Energy Physics - Lattice 2015-06-15 v4 High Energy Physics - Phenomenology Nuclear Theory

Abstract

The axial charge of the nucleon gAg_A and the pion decay constant fπf_\pi are computed in two-flavor lattice QCD. The simulations are carried out on lattices of various volumes and lattice spacings. Results are reported for pion masses as low as mπ=130\mboxMeVm_\pi=130\,\mbox{MeV}. Both quantities, gAg_A and fπf_\pi, suffer from large finite size effects, which to leading order ChEFT and ChPT turn out to be identical. By considering the naturally renormalized ratio gA/fπg_A/f_\pi, we observe a universal behavior as a function of decreasing quark mass. From extrapolating the ratio to the physical point, we find gAR=1.29(5)(3)g_A^R=1.29(5)(3), using the physical value of fπf_\pi as input and r0=0.50(1)r_0=0.50(1) to set the scale. In a subsequent calculation we attempt to extrapolate gAg_A and fπf_\pi separately to the infinite volume. Both volume and quark mass dependencies of gAg_A and fπf_\pi are found to be well decribed by ChEFT and ChPT. We find at the physical point gAR=1.24(4)g_A^R=1.24(4) and fπR=89.6(1.1)(1.8)\mboxMeVf_\pi^R=89.6(1.1)(1.8)\,\mbox{MeV}. Both sets of results are in good agreement with experiment. As a by-product we obtain the low-energy constant lˉ4=4.2(1)\bar{l}_4=4.2(1).

Keywords

Cite

@article{arxiv.1302.2233,
  title  = {Nucleon axial charge and pion decay constant from two-flavor lattice QCD},
  author = {R. Horsley and Y. Nakamura and A. Nobile and P. E. L. Rakow and G. Schierholz and J. M. Zanotti},
  journal= {arXiv preprint arXiv:1302.2233},
  year   = {2015}
}

Comments

16 pages, 8 figures; published version (Physics Letters B)