Baryonic Bound States in the Non-Local NJL Model
Abstract
Baryons, as three-quark bound states, require a covariant treatment in the intermediate-energy regime where perturbative QCD is no longer applicable and where nonperturbative correlations dominate. This article reformulates the content of the CERN Baltic Conference 2025 presentation on baryonic bound states in the non-local Nambu--Jona-Lasinio (NJL) model. We review how the relativistic Faddeev approach reduces the three-body quark problem to an effective quark--diquark bound-state problem, describe the scalar and axial-vector diquark channels, and show how the resulting quark--diquark Bethe--Salpeter equation can be written as an eigenvalue problem for the baryon mass. The non-local NJL framework, motivated by QCD-based nonlocal interactions and Dyson--Schwinger considerations, provides a compact description in which baryon masses and form factors are extracted from the numerical solution of coupled integral equations.
Cite
@article{arxiv.2605.00084,
title = {Baryonic Bound States in the Non-Local NJL Model},
author = {Arpan Chatterjee and Stefan Groote},
journal= {arXiv preprint arXiv:2605.00084},
year = {2026}
}
Comments
6 pages, 2 figures, talk presented by Arpan Chatterjee at the 5th CERN Baltic Conference (CBC 2025), Kaunas University of Technology, Kaunas, Lithuania, 14--16 October 2025