English

Severely infrared singular gluon propagator in QCD

High Energy Physics - Phenomenology 2007-05-23 v4

Abstract

We have explicitly shown that the infrared structure of the full gluon propagator in QCD is an infite sum over all severe (i.e., more singular than 1/q21/q^2) infrared singularities. It reflects the zero momentum modes enhancement effect in the true QCD vacuum. Its existence exhibits a characteristic mass (the so-called mass gap), which is responsible for the scale of nonperturbative dynamics in the QCD ground state. By an infrared renormalization of a mass gap only, the deep infrared structure of the full gluon propagator is saturated by the simplest severe infrared singularity, the famous (q2)2(q^2)^{-2}. So, there is no smooth in the infrared limit the full gluon propagator. The main dynamical source of severe infrared singularities in the gluon propagator is the two-loop skeleton term of the corresponding equation of motion, which contains the four-gluon vertices only. Taking into account the distribution nature of severe infrared singularities, the gluon confinement criterion is formulated in a manifestly gauge-invariant way.

Cite

@article{arxiv.hep-ph/0404054,
  title  = {Severely infrared singular gluon propagator in QCD},
  author = {V. Gogohia},
  journal= {arXiv preprint arXiv:hep-ph/0404054},
  year   = {2007}
}

Comments

12 pages, no tables, no figures, multiplied typos are corrected, clarification is introduced