English

Bayesian-Wilson coefficients in lattice QCD computations of valence PDFs and GPDs

High Energy Physics - Lattice 2021-10-08 v3 High Energy Physics - Phenomenology Nuclear Theory

Abstract

We propose an analysis method for the leading-twist operator product expansion based lattice QCD determinations of the valence parton distribution function (PDF). In the first step, we determine the confidence-intervals of the leading-twist MS\overline{\mathrm{MS}} Wilson coefficients, Cn(μ2z2)C_n(\mu^2 z^2), of the equal-time bilocal quark bilinear, given the lattice QCD matrix element of Ioffe-time distribution for a particular hadron HH as well as the prior knowledge of the valence PDF, f(x,μ)f(x,\mu) of the hadron HH determined via global fit from the experimental data. In the next step, we apply the numerically estimated CnC_n in the lattice QCD determinations of the valence PDFs of other hadrons, and for the zero-skewness generalized parton distribution (GPD) of the same hadron HH at non-zero momentum transfers. Our proposal still assumes the dominance of leading-twist terms, but it offers a pragmatic alternative to the usage of perturbative Wilson coefficients and their associated higher-loop uncertainties such as the effect of all-order logarithms at larger sub-Fermi quark-antiquark separations zz.

Keywords

Cite

@article{arxiv.2106.03875,
  title  = {Bayesian-Wilson coefficients in lattice QCD computations of valence PDFs and GPDs},
  author = {Nikhil Karthik and Raza Sabbir Sufian},
  journal= {arXiv preprint arXiv:2106.03875},
  year   = {2021}
}

Comments

13 pages, 5 figures; published version