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arXiv:hep-ph/9806216·v1·High Energy Physics — Phenomenology

Chiral Symmetry Restoration in the Instanton Liquid at Finite Density

R. Rapp🇺🇸

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Abstract

The properties of the QCD partition function at finite chemical potential are studied within the instanton liquid model. It is shown that the density dependence of the quark-induced instanton-antiinstanton (I-A) interaction leads to the formation of topologically neutral I-A pairs ('molecules'), resulting in a first order chiral phase transition at a critical chemical potential MeV. At somewhat higher densities ( MeV), the quark Fermi surface becomes instable with respect to diquark condensation (Cooper pairs) generating BCS-type energy gaps of order 50 MeV.

Comments: 7 pages LaTeX, 4 eps-figures and espcrc1.sty included, to appear in the Proc. of the 'QCD at Finite Baryon Density'-Workshop (Bielefeld, 27.-30.04.98)

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