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Quasi Parton Distribution Functions in Covariant Quark Models

High Energy Physics - Phenomenology 2026-05-13 v1

Abstract

Quasi parton distribution functions (QPDFs) are defined in terms of QCD fields at spacelike separations evaluated in matrix elements of hadrons moving with velocity vv. These objects can be studied in lattice QCD. In the limit when vv approaches the speed of light, QPDFs converge to PDFs. It is insightful to study QPDFs and their convergence in models. In this work, we first study the QPDFs in a broad class of quark models characterized by one common feature, namely the absence of gauge degrees of freedom. We provide general proofs for the convergence and sum rules of the unpolarized quark and antiquark QPDFs for both choices γ0\gamma^0 and γ3\gamma^3. We choose the Covariant Parton Model (CPM) as an illustration. We derive analytical results for the small-xvx_v behavior of QPDFs and the energy-momentum tensor form factor cˉq(t)\bar{c}^q(t) at zero momentum transfer. These results are of interest as they correspond to a Wandzura-Wilczek-type approximation.

Keywords

Cite

@article{arxiv.2605.12373,
  title  = {Quasi Parton Distribution Functions in Covariant Quark Models},
  author = {Fatma Aslan and Asli Tandogan and Peter Schweitzer},
  journal= {arXiv preprint arXiv:2605.12373},
  year   = {2026}
}

Comments

25 pages, 7 figures, 1 table