English

Color confinement and screening in the $\mathbf{\theta}$ -vacuum

High Energy Physics - Phenomenology 2015-06-24 v2 High Energy Physics - Theory Nuclear Theory

Abstract

QCD perturbation theory ignores the compact nature of SU(3)SU(3) gauge group that gives rise to the periodic θ\theta-vacuum of the theory. We propose to modify the gluon propagator to reconcile perturbation theory with the anomalous Ward identities for the topological current in the θ\theta-vacuum. As a result, the gluon couples to the Veneziano ghost describing the tunneling transitions between different Chern-Simons sectors of the vacuum; we call the emerging gluon dressed by ghost loops a "glost". We evaluate the glost propagator and find that it has the form G(p)=(p2+χtop/p2)1G(p) = (p^2 + \chi_{top}/p^2)^{-1} where χtop\chi_{top} is the Yang-Mills topological susceptibility related to the η\eta' mass by Witten-Veneziano relation; this propagator describes confinement of gluons at distances χtop1/41\sim \chi_{top}^{-1/4} \simeq 1 fm. The same functional form of the propagator was originally proposed by Gribov as a solution to the gauge copies problem that plagues perturbation theory. The resulting running coupling coincides with the perturbative one at p2χtopp^2 \gg \sqrt{\chi_{top}}, but in the infrared region either freezes (in pure Yang-Mills theory) or vanishes (in full QCD with light quarks), in accord with experimental evidence. Our scenario makes explicit the connection between confinement and topology of the QCD vacuum; we discuss the implications for spin physics, high energy scattering, and the physics of quark-gluon plasma.

Keywords

Cite

@article{arxiv.1501.04622,
  title  = {Color confinement and screening in the $\mathbf{\theta}$ -vacuum},
  author = {Dmitri E. Kharzeev and Eugene M. Levin},
  journal= {arXiv preprint arXiv:1501.04622},
  year   = {2015}
}

Comments

7 pages, 4 figures; slightly extended version