English

Pion valence quark distribution from current-current correlation in lattice QCD

High Energy Physics - Lattice 2020-09-22 v3 High Energy Physics - Experiment High Energy Physics - Phenomenology Nuclear Experiment Nuclear Theory

Abstract

We extract the pion valence quark distribution qvπ(x)q^\pi_{\rm v}(x) from lattice QCD (LQCD) calculated matrix elements of spacelike correlations of one vector and one axial vector current analyzed in terms of QCD collinear factorization, using a new short-distance matching coefficient calculated to one-loop accuracy. We derive the Ioffe time distribution of the two-current correlations in the physical limit by investigating the finite lattice spacing, volume, quark mass, and higher-twist dependencies in a simultaneous fit of matrix elements computed on four gauge ensembles. We find remarkable consistency between our extracted qvπ(x)q^\pi_{\rm v}(x) and that obtained from experimental data across the entire xx-range. Further, we demonstrate that the one-loop matching coefficient relating the LQCD matrix computed in position space to the qvπ(x)q_{\rm v}^{\pi}(x) in momentum space has well-controlled behavior with Ioffe time. This justifies that LQCD calculated current-current correlations are good observables for extracting partonic structures by using QCD factorization, which complements to the global effort to extract partonic structure from experimental data.

Keywords

Cite

@article{arxiv.2001.04960,
  title  = {Pion valence quark distribution from current-current correlation in lattice QCD},
  author = {Raza Sabbir Sufian and Colin Egerer and Joseph Karpie and Robert G. Edwards and Bálint Joó and Yan-Qing Ma and Kostas Orginos and Jian-Wei Qiu and David G. Richards},
  journal= {arXiv preprint arXiv:2001.04960},
  year   = {2020}
}

Comments

Published version, Physical Review D

R2 v1 2026-06-23T13:11:11.376Z