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- W2042680329 abstract "Superconducting and magnetically long-range ordered states were believed to be mutually exclusive phenomena. The discovery of rare-earth compounds in recent years, which exhibit both superconductivity and magnetic ordering (ferromagnetic, antiferromagnetic or sinusoidal), has led to considerable theoretical and experimental work on such systems.In the present article, we give a review of various theoretical models and important experimental results. In the theoretical sections, we start with the Abrikosov-Gorkov pair breaking theory for dilute alloys and discuss its improvement in the work of Muller-Hartmann and Zittartz. Then, in the context of magnetic superconductors, various microscopic theories that have been advanced are presented. These predict re-entrant behaviour in some systems (ferromagnetic superconductors) and coexistence regions in others (particularly antiferromagnetic superconductors). Following this, phenomenological generalized Ginzburg-Landau theories for two kinds of orders (superconducting and magnetic) are presented. A section dealing with renormalization group analysis of phase diagrams in magnetic superconductors is given.In experimental sections, the properties of each rare-earth compounds (ternary as well as some tetranery) are reviewed. These involve susceptibility, heat capacity, resistivity, upper critical field, neutron scattering and magnetic resonance measurements. The anomalous behaviour of the upper critical field of antiferromagnetic superconductors near the Neel temperature is discussed both in theory sections and experimental section for various systems." @default.
- W2042680329 created "2016-06-24" @default.
- W2042680329 creator A5066478300 @default.
- W2042680329 creator A5087432023 @default.
- W2042680329 date "1984-12-01" @default.
- W2042680329 modified "2023-09-27" @default.
- W2042680329 title "Magnetic superconductors: Model theories and experimental properties of rare-earth compounds" @default.
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- W2042680329 doi "https://doi.org/10.1016/0370-1573(84)90122-4" @default.
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