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Titlebook: High Temperature Superconductivity; Jeffrey W. Lynn Textbook 1990 Springer-Verlag New York Inc. 1990 BCS theory.Cooper pair.Exciton.Joseph

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Electronic Structure, Lattice Dynamics, and Magnetic Interactions,hich can be controlled by doping or oxygen stoichiometry. At low temperatures, the metallic phase becomes superconducting, while the insulating phase shows long range antiferromagnetic order. The structure of most of the high-.. superconductors are . perovskite with large anisotropy (see Chapter 4),
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Thermal and Transport Properties, stages of the revival of interest in superconductivity, but it may be the understanding of the normal state which represents the largest challenge. Their strange normal state properties, which are not characteristic of other materials, is most vividly displayed in their transport properties. The co
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Magnetic Properties,uperconductivity. From the standpoint of superconductivity the central issue is to identify the nature of the superconducting state. One aspect concerns the basic character of the superconducting state itself, that is, whether it develops in the usual BCS way as a result of an instability of the Fer
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Textbook 1990tz).- The Josephson effect (P. Ferrell).- Crystallography (A. Santoro).- Electronic structure (C.P.Wang).- Magnetic properties and interactions (J. Lynn).- Synthesis and diamagnetic properties (R. Shelton).- Electron pairing (P. Allen).- Superconducting devices (F. Bedard).- Superconducting properti
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Thermal and Transport Properties,perconducting properties may be described by a Bardeen-Cooper-Schrieffer (BCS) theory, the nature of the pairing mechanism will undoubtedly remain a mystery until more is known about the normal state.
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