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Titlebook: Superconductivity in Ternary Compounds II; Superconductivity an M. Brian Maple,Øystein Fischer Book 1982 Springer-Verlag Berlin Heidelberg

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Superconductivity, Magnetism and Their Mutual Interaction in Ternary Rare Earth Rhodium Borides andent years in connection with the interplay between superconductivity and magnetism. The purpose of this chapter is to review the experiments that have been carried out on the RERh.B., compounds since their discovery some five years ago. The experimental situation for the RE.Mo.X. compounds is discus
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Superconductivity and Magnetism in (RE)Mo6X8 Type Compounds,re-earth (RE) compounds of the (RE)Mo.X.-type (X = S, Se) [5.1,2] and (RE)Rh.B.-type [5.3]. The renewed interest in the subject has indeed increased with the discovery of reentrant superconductivity at the ferromagnetic transition in two of these compounds, HoMo.S. [5.4] and ErRh.B. [5.5]. This was
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,NMR and Mössbauer Studies in Ternary Superconductors,CS) [7.2] theory of superconductivity. Hyperfine techniques, particularly the Mössbauer effect and NMR, are making important contributions to the microscopic picture developing for the ternary superconductors. Shortly after the discovery of superconductivity in the Chevrel phases [7.3] by Matthias a
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Neutron Scattering Studies of Magnetic Ordering in Ternary Superconductors,t magnetic ions substituted into a superconducting host generally had a very detrimental effect on superconductivity [8.1] due to the exchange-induced spin depairing of the Cooper electrons [8.2]. Typically less than a percent magnetic ion concentration was found to be sufficient to destroy supercon
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