Insight on confinement from the QCD effective charge
摘要
Like the Gell-Mann--Low coupling of QED, the effective charge is a physical, observable-defined running coupling that can serve as the QCD coupling . It can be represented by an analytic form consistent with renormalization-group evolution, light-front holographic QCD, and the world data on . As an observable, has a physically relevant analytic structure that reflects the underlying partonic dynamics. It displays, in the long-distance regime, two imaginary conjugate singularities at , with the QCD scale. To connect this structure to confinement, we use known relations between and the parton dressed propagators and vertices. Since, unlike vertices, propagators characterize a field variation between separate locations, the two singularities are assigned to the propagators. This results in the parton propagators displaying a long-distance behavior where propagation is suppressed beyond distances of order , as expected from confinement. This offers an intuitive interpretation of confinement as the suppression of QCD Green's functions at long distance.
引用
@article{arxiv.2607.05144,
title = {Insight on confinement from the QCD effective charge},
author = {A. Deur},
journal= {arXiv preprint arXiv:2607.05144},
year = {2026}
}
备注
7 pages, 2 figures, Supplementary material (4 pages)