Bound states and perturbation theory

Abstract

A perturbative expansion for QED and QCD bound states is formulated in A0=0 gauge. The constituents of each Fock state are bound by their instantaneous interaction. In QCD an O(αs0) confining potential arises from a homogeneous solution of Gauss' constraint. The potential is uniquely determined by the QCD action, up to a universal scale. The Cornell potential is reproduced for quarkonia, and corresponding ones found for higher Fock states, baryons and glueballs.

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