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Competition Between Induced Symmetry Breaking, Cooper Pairing and Chiral Condensate at Finite Density

Youngman Kim, Mannque Rho

nucl-tharXiv:nucl-th/0004054

Abstract

We study the competition between induced symmetry breaking (ISB), Cooper pairing (superconductivity) and chiral condensation at finite non-asymptotic density. Using a quantum mechanical model studied recently by Ilieva and Thirring, we analyze the expectation value of the fermion number density a*a in the presence of chemical potential and discuss relevance of the ISB phenomenon in the model. By Bogoliubov transformation, we obtain the ground state energy and find that a phase with both superconducting and mean field gap is a true ground state. We also study the effective potentials of a two-dimensional field theory model for competitions between ψψ, ψψ and ψψ. We find that in the regime μ<μc, where μc is found to be around 0.4 mF with mF being the renormalizaton point of chiral condensate, we have a chiral symmetry-breaking phase with almost zero fermion number density and in the case of μ>μc the system sits in the mixed phase characterized by ψψ≠ 0 and ψψ≠ 0 as long as the renormalization point, M0, corresponding to a superconducting gap is not zero, M0≠ 0.

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