Flow equations in the light-front QCD: mass gap and confinement
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, , and confining, , 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 . The cutoff, which regulates small light-front divergences, sets up a scale for the dynamical gluon mass and the string tension in the -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 -axis.
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