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arXiv:hep-ph/9609269·v1·High Energy Physics — Phenomenology

Electric-Magnetic Duality and the Heavy Quark Potential

M. Baker (University of Washington, Seattle)

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Abstract

We use the assumption of electric-magnetic duality to express the heavy quark potential in QCD in terms of a Wilson Loop determined by the dynamics of a dual theory which is weakly coupled at long distances. The classical approximation gives the leading contribution to and yields a velocity dependent heavy quark potential which for large becomes linear in , and which for small approaches lowest order perturbative QCD. The corresponding long distance interaction between color magnetic monopoles is governed by a Yukawa potential. As a consequence the magnetic interaction between the color magnetic moments of the quarks is exponentially damped. The semi-classical corrections to due to fluctuations of the classical flux tube should lead to an effective string theory free from the conformal anomaly.

Comments: 13 pages 1 postscript figure uses sprocl.sty psfig.sty