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- W1999808520 abstract "A discussion is made on the appearance of strong effective magnetic field with a new quantum state induced by the zero-point plasma oscillation in semi-localized half-filling electron system in the 2D network of circular molecular orbits. With the help of numerical calculation we study the appearance of superconductivity in the Cu and Ru oxide superconductor employing the field-induced quantum state and a gauge-field pairing model, and succeed in giving a unified explanation to the two apparently different types of oxide superconductivity. It is found that in the Cu oxide superconductor singlet pairing of d x 2 -y 2 symmetry occurs in each CuO 2 layer at the decoupling of the zero-spin-sum singlet FQHE state [Formula: see text] by small carrier doping, while in the Ru oxide superconductor triplet electron pairing is caused by two neighboring RuO 2 layers at the decoupling of the spin-polarized FQHE Ψ 1,1,1 state where the pairs have d 3z 2 -r 2 symmetry with horizontal node on the Fermi surface. Numerical calculation gives critical temperature consistent with experimental observation." @default.
- W1999808520 created "2016-06-24" @default.
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- W1999808520 date "2004-01-10" @default.
- W1999808520 modified "2023-09-26" @default.
- W1999808520 title "UNIFIED MODEL OF SUPERCONDUCTIVITY OF SINGLET-PAIR Cu OXIDE SUPERCONDUCTOR AND TRIPLET-PAIR Ru OXIDE SUPERCONDUCTOR" @default.
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- W1999808520 doi "https://doi.org/10.1142/s0217979204023726" @default.
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