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- W997616400 abstract "Publisher Summary The magnetic ordering of the lanthanide ions in superconducting systems has been a topic of active interest for many years. In conventional “magnetic superconductors,” such as the Chevrel phase, and related materials, the lanthanide moments are coupled very weakly both to the metallic electrons and to each other, resulting in very low magnetic ordering temperatures and a delicate energetic balance with superconductivity. A similar situation occurs for the layered cuprates in which the development of long range lanthanide magnetic order also occurs at very low temperatures. In contrast to the earlier systems, the superconductivity in the cuprates typically occurs at much higher temperatures, and the antiferromagnetic order that develops on the lanthanide sublattice coexists with the superconducting state. In addition, the 2-1-4 class of materials provides the first examples of superconductors where the exchange interactions unambiguously dominate the lanthanide energetics, such as Sm2CuO4 has a dipole ordering temperature that is two orders of magnitude lower than the observed ordering temperature of 6 K." @default.
- W997616400 created "2016-06-24" @default.
- W997616400 creator A5003462182 @default.
- W997616400 creator A5030343579 @default.
- W997616400 date "2001-01-01" @default.
- W997616400 modified "2023-09-24" @default.
- W997616400 title "Chapter 199 Neutron scattering studies of lanthanide magnetic ordering" @default.
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