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Pion Valence Quark Distribution from Matrix Element Calculated in Lattice QCD

High Energy Physics - Lattice 2019-04-17 v2 High Energy Physics - Phenomenology Nuclear Theory

Abstract

We present the first exploratory lattice QCD calculation of the pion valence quark distribution extracted from spatially separated current-current correlations in coordinate space. We show that an antisymmetric combination of vector and axial-vector currents provides direct information on the pion valence quark distribution. Using the collinear factorization approach, we calculate the perturbative tree-level kernel for this current combination and extract the pion valence distribution. The main goal of this article is to demonstrate the efficacy of this general lattice QCD approach in the reliable extraction of parton distributions. With controllable power corrections and a good understanding of the lattice systematics, this method has the potential to serve as a complementary to the many efforts to extract parton distributions in global analyses from experimentally measured cross sections. We perform our calculation on an ensemble of 2+1 flavor QCD using the isotropic-clover fermion action, with lattice dimensions 323×9632^3\times 96 at a lattice spacing \mbox{a=0.127a=0.127 fm} and the quark mass equivalent to a pion mass mπ416m_\pi \simeq 416 MeV.

Keywords

Cite

@article{arxiv.1901.03921,
  title  = {Pion Valence Quark Distribution from Matrix Element Calculated in Lattice QCD},
  author = {Raza Sabbir Sufian and Joseph Karpie and Colin Egerer and Kostas Orginos and Jian-Wei Qiu and David G. Richards},
  journal= {arXiv preprint arXiv:1901.03921},
  year   = {2019}
}

Comments

Version to appear in Physical Review D, 13 pages, 7 figures