Published May 23, 1983 | Version v1
Journal article

Short-distance perturbation theory for the leading logarithm models

Creators

  • 1. Institut des Hautes Etudes Scientifiques, 91 - Bures-sur-Yvette (France)

Description

I derive a short-distance perturbation expansion for the static potential of quasi-abelian quark and antiquark source charges, in the models in which renormalization group radiative corrections are retained in the gauge gluon effective dielectric functional. A natural running coupling parameter zeta for the models is identified, and the scale mass #betta#sub(p) appearing in zeta is computed by requiring the vanishing of the O(zeta2) term in the perturbation expansions. The models are shown to give unsatisfactory results beyond one-loop order in the short-distance expansion, as a result of the breakdown in the ultraviolet of the assumption that the effective action is a local functional of the field strength. The same argument indicates that the assumption of a local effective action becomes self-consistent in the large-distance limit. The coupling parameter zeta is identified as a running coupling which evolves in field strength, rather than momentum, and which becomes infinite in the large-distance limit. (orig.)

Additional details

Publishing Information

Journal Title
Nucl. Phys., B
Journal Volume
217
Journal Issue
2
Series
CODEN: NUPBB.;Nucl. Phys., B.
Journal Page Range
381-394
ISSN
0550-3213

Optional Information

Contract/Grant/Project number
Contract DE-AC02-76ER02220