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Chiral Symmetry and Quark Confinement

Kevin Cahill

hep-pharXiv:hep-ph/9812312

Abstract

In the physical vacuum of QCD, the energy density of light-quark fields strongly coupled to slowly varying gluon fields can be negative, and so a condensate of pairs of quarks and antiquarks of nearly opposite momenta forms which breaks chiral symmetry, confines quarks, and makes gluons massive.

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