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Antiferromagnetic Spin Fluctuations and Superconductivity in Two-Dimensional Metals -A Possible Model for High<i>T</i><sub>c</sub>Oxides

Journal of the Physical Society of Japan · 1990 · Vol. 59(8) · pp. 2905–2915
Tôru MoriyaYoshinori TakahashiKazuo Ueda

Abstract

Spin fluctuations in antiferromagnetic and nearly antiferromagnetic two dimensional (square lattice) itinerant electron systems, as a possible model for high T c superconductors, are investigated by using the self-consistent renormalization theory. The electrical resistivity and the nuclear spin relaxation rate due to the spin fluctuations in the normal state are calculated. The results in the nearly antiferromagnetic regime as applied to high T c oxides seem to explain the experimental results both in their temperature dependence and in their orders of magnitudes. By using the same spin fluctuations we discuss superconductivity due to the spin fluctuation mechanism within a weak coupling theory. The order parameter is shown to have B 1 g or A 2 g symmetry and the critical temperature is evaluated to be of the right order of magnitude.

Physics of Superconductivity and MagnetismRare-earth and actinide compoundsIron-based superconductors researchCondensed matter physicsAntiferromagnetismSuperconductivityPhysicsElectrical resistivity and conductivitySpin (aerodynamics)Square latticeIsing modelQuantum mechanicsThermodynamics
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