English

New insights on proton structure from lattice QCD: the twist-3 parton distribution function $g_T(x)$

High Energy Physics - Lattice 2020-12-30 v2 High Energy Physics - Phenomenology

Abstract

In this work, we present the first-ever calculation of the isovector flavor combination of the twist-3 parton distribution function gT(x)g_T(x) for the proton from lattice QCD. We use an ensemble of gauge configurations with two degenerate light, a strange and a charm quark (Nf=2+1+1N_f=2+1+1) of maximally twisted mass fermions with a clover improvement. The lattice has a spatial extent of 3~fm, lattice spacing of 0.093~fm, and reproduces a pion mass of 260260 MeV. We use the quasi-distribution approach and employ three values of the proton momentum boost, 0.83 GeV, 1.25 GeV, and 1.67 GeV. We use a source-sink separation of 1.12~fm to suppress excited-states contamination. The lattice data are renormalized non-perturbatively. We calculate the matching equation within Large Momentum Effective Theory, which is applied to the lattice data in order to obtain gTg_T. The final distribution is presented in the MS\overline{\rm MS} scheme at a scale of 2 GeV. We also calculate the helicity distribution g1g_1 to test the Wandzura-Wilczek approximation for gTg_T. We find that the approximation works well for a broad range of xx. This work demonstrates the feasibility of accessing twist-3 parton distribution functions from novel methods within lattice QCD and can provide essential insights into the structure of hadrons.

Keywords

Cite

@article{arxiv.2004.04130,
  title  = {New insights on proton structure from lattice QCD: the twist-3 parton distribution function $g_T(x)$},
  author = {Shohini Bhattacharya and Krzysztof Cichy and Martha Constantinou and Andreas Metz and Aurora Scapellato and Fernanda Steffens},
  journal= {arXiv preprint arXiv:2004.04130},
  year   = {2020}
}

Comments

10 pages, 6 figures, version accepted for publication