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AbstractAbstract
[en] Gribov's scenario of supercritical charges in QCD is investigated. We perform a numerical study of the corresponding equation for the Green function of light quarks. This is done in an approximation which neglects all pion contributions. Different types of solutions in the Euclidean region are discussed and the mass function of the quark is calculated. The solutions of the equation are shown to have a qualitatively different behaviour if the strong coupling constant αs exceeds a critical value αc=0.43 in the infrared region. Chiral symmetry breaking is found to occur at supercritical coupling. The analytic structure of the solutions is investigated. Earlier results obtained by Gribov are confirmed and extended. (orig.)
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20 refs.
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Journal Article
Journal
European Physical Journal. C; ISSN 1434-6044; ; v. 13(3); p. 503-518
Country of publication
ANALYTIC STRUCTURE, CHIRAL SYMMETRIES, CHIRAL SYMMETRY BREAKING, ELEMENTARY PARTICLE COUPLING CONSTANTS, ELEMENTARY PARTICLE STRONG INTERACTIONS, EUCLIDEAN REGION, FIRST ORDER PHASE TRANSITION, GREEN FUNCTION, GREEN'S FUNCTION METHODS, GRIBOV EQUATION, INFRARED REGION, LIGHT QUARKS, MASS FUNCTION, MASS RENORMALIZATION, QCD, QUANTUM CHROMODYNAMICS, QUARK MASS, QUARKS, RENORMALISATION, SPONTANEOUS SYMMETRY BREAKING, STRONG COUPLING CONSTANT, SUPERCRITICAL CHARGES, SUPERCRITICAL COUPLING
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