English

Flow equations in the light-front QCD: mass gap and confinement

High Energy Physics - Phenomenology 2007-05-23 v1

Abstract

The light-front QCD is studied using the method of flow equations. Solving the light-front gluon gap equation, the effective gluon mass is generated dynamically. The effective interaction between static quark and antiquark, generated through elimination of the quark-gluon minimal coupling by flow equations, has the Coulomb, 1/q21/q^2, and confining, 1/q41/q^4, singular behavior. Elimination of the quark-gluon coupling at small gluon momenta is governed by the cutoff dependent, dynamical gluon mass, which makes this elimination possible and provides such an enhancement at q0q\sim 0. The cutoff, which regulates small light-front xx divergences, sets up a scale for the dynamical gluon mass and the string tension in the qqˉq\bar{q}-potential. The mechanism of confimenemet in the light-front frame is suggested, based on the singular nature of the light-front gauge along the light-front xx-axis.

Keywords

Cite

@article{arxiv.hep-ph/0003288,
  title  = {Flow equations in the light-front QCD: mass gap and confinement},
  author = {E. Gubankova},
  journal= {arXiv preprint arXiv:hep-ph/0003288},
  year   = {2007}
}

Comments

8 pages, uses sprocl.sty. To appear in the proceedings of the CSSM Workshop on Light-Cone QCD and Nonperturbative Hadron Physics, Adelaide, SA, Dec. 13--21,1999

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