4.8 Review

Superconducting phases of f-electron compounds

期刊

REVIEWS OF MODERN PHYSICS
卷 81, 期 4, 页码 1551-1624

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AMER PHYSICAL SOC
DOI: 10.1103/RevModPhys.81.1551

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alloys; antiferromagnetic materials; ferromagnetic-antiferromagnetic transitions; superconducting devices

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Intermetallic compounds containing f-electron elements display a wealth of superconducting phases, which are prime candidates for unconventional pairing with complex order parameter symmetries. For instance, superconductivity has been found at the border of magnetic order as well as deep within ferromagnetically and antiferromagnetically ordered states, suggesting that magnetism may promote rather than destroy superconductivity. Superconducting phases near valence transitions or in the vicinity of magnetopolar order are candidates for new superconductive pairing interactions such as fluctuations of the conduction electron density or the crystal electric field, respectively. The experimental status of the study of the superconducting phases of f-electron compounds is reviewed.

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