English

Nucleon Structure from Basis Light-Front Quantization : Status and Prospects

High Energy Physics - Phenomenology 2025-12-10 v1 High Energy Physics - Theory Nuclear Theory

Abstract

We review recent advancements in understanding nucleon structure within the Basis Light-Front Quantization (BLFQ) framework--a fully relativistic, nonperturbative approach to solving quantum field theories. In its initial phase, we start with the leading Fock sector qqq|qqq\rangle and an effective light-front Hamiltonian incorporating confinement and one-gluon exchange within which BLFQ can already successfully describe key nucleon observables. The framework has since been extended to include the next-to-leading Fock sector qqqg|qqqg\rangle, enabling studies of gluonic contributions to the nucleon's internal structure, including gluon helicity, orbital angular momentum, and three-dimensional imaging through generalized and transverse momentum dependent parton distributions (GPDs and TMDs). Most recently, BLFQ has achieved a significant milestone by computing nucleon light-front wavefunctions as eigenstates of the QCD Hamiltonian without an explicit confining potential. These calculations, including Fock sectors up to qqqqqˉ|qqqq\bar{q}\rangle, further develop the path to first-principles predictions of quark and gluon matter densities, helicity and transversity distributions, and spin observables, showing qualitative agreement with experimental and phenomenological results. Together, these developments highlight BLFQ's growing capacity to provide an increasingly complete and realistic picture of nucleon structure grounded in QCD.

Keywords

Cite

@article{arxiv.2512.08283,
  title  = {Nucleon Structure from Basis Light-Front Quantization : Status and Prospects},
  author = {James P. Vary and Chandan Mondal and Siqi Xu and Xingbo Zhao and Yang Li},
  journal= {arXiv preprint arXiv:2512.08283},
  year   = {2025}
}

Comments

77 pages, 15 figures; Review article to appear in Eur. Phys. J. Spec. Top

R2 v1 2026-07-01T08:16:14.992Z