English

Tensor-polarized parton distribution functions of the deuteron by a convolution model

High Energy Physics - Phenomenology 2026-07-10 v1 High Energy Physics - Experiment High Energy Physics - Lattice Nuclear Experiment Nuclear Theory

Abstract

Tensor-polarized parton distribution functions (PDFs) are calculated for the deuteron by using a convolution formalism, where the tensor-polarized PDFs are given by the corresponding nucleon's unpolarized PDFs convoluted with the tensor-polarized nucleon momentum distribution in the deuteron. These distributions are obtained at Q2=2.5Q^2=2.5 GeV2^2 in order to compare with the tensor-polarized PDFs which were determined by HERMES b1b_1 data. The obtained distributions are very different from the ones determined from the HERMES data, which indicates further studies are needed to clarify the difference, possibly by considering a new mechanism beyond the simple bound system of a proton and a neutron. The obtained PDFs δTq\delta_T q and δTqˉ\delta_T \bar q are converted to the PDFs of the Trento convention f1LLqf_{1LL}^{\, q} and f1LLqˉf_{1LL}^{\, \bar q}, and they are used for estimating the twist-3 PDFs fLTqf_{LT}^{\, q} and fLTqˉf_{LT}^{\, \bar q} by using a Wandzura-Wilczek-like relation. Because deep-inelastic-scattering experiments are under preparation for structure functions with a tensor-polarized deuteron target at the Thomas Jefferson National Accelerator Facility, and a Drell-Yan experiment will be possible at hadron accelerator facilities, such as the Fermi National Accelerator Laboratory, the obtained tensor-polarized PDFs will be tested experimentally.

Keywords

Cite

@article{arxiv.2607.09237,
  title  = {Tensor-polarized parton distribution functions of the deuteron by a convolution model},
  author = {S. Kumano and Kenshi Kuroki},
  journal= {arXiv preprint arXiv:2607.09237},
  year   = {2026}
}

Comments

7 pages, 5 figures