2002Journal of Experimental and Theoretical Physics LettersOpen access

Non-BCS pairing in anisotropic strongly correlated electron systems in solids

V. A. Khodel, J. W. Clark

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Abstract

The problem of pairing in anisotropic electronic systems possessing patches of fermion condensate in the vicinity of the Van Hove points is analyzed. Attention is directed to opportunities for the occurrence of non-BCS pairing correlations between the states belonging to the fermion condensate. It is shown that the physical emergence of such pairing correlations would drastically alter the behavior of the single-particle Green function, the canonical pole of Fermi-liquid theory being replaced by a branch point.

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The problem of pairing in anisotropic electronic systems possessing patches of fermion condensate in the vicinity of the Van Hove points is analyzed. Attention is directed to opportunities for the occurrence of non-BCS pairing correlations between the states belonging to the fermion condensate. It is shown that the physical emergence of such pairing correlations would drastically alter the behavior of the single-particle Green function, the canonical pole of Fermi-liquid theory being replaced by a branch point.

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Available abstract

The problem of pairing in anisotropic electronic systems possessing patches of fermion condensate in the vicinity of the Van Hove points is analyzed. Attention is directed to opportunities for the occurrence of non-BCS pairing correlations between the states belonging to the fermion condensate. It is shown that the physical emergence of such pairing correlations would drastically alter the behavior of the single-particle Green function, the canonical pole of Fermi-liquid theory being replaced by a branch point.

Key concepts: Pairing, Condensed matter physics, Electron pair, Anisotropy, Electron, Physics, Superconductivity, Materials science

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