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      de Haas–van Alphen effect and Fermi surface properties in rare earth and actinide compounds (Review Article)

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      Low Temperature Physics
      AIP Publishing

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          Temperature and Purity Dependence of the Superconducting Critical Field,Hc2. III. Electron Spin and Spin-Orbit Effects

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            A technique for relativistic spin-polarised calculations

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              Superconductivity on the border of itinerant-electron ferromagnetism in UGe2

              The absence of simple examples of superconductivity adjoining itinerant-electron ferromagnetism in the phase diagram has for many years cast doubt on the validity of conventional models of magnetically mediated superconductivity. On closer examination, however, very few systems have been studied in the extreme conditions of purity, proximity to the ferromagnetic state and very low temperatures required to test the theory definitively. Here we report the observation of superconductivity on the border of ferromagnetism in a pure system, UGe2, which is known to be qualitatively similar to the classic d-electron ferromagnets. The superconductivity that we observe below 1 K, in a limited pressure range on the border of ferromagnetism, seems to arise from the same electrons that produce band magnetism. In this case, superconductivity is most naturally understood in terms of magnetic as opposed to lattice interactions, and by a spin-triplet rather than the spin-singlet pairing normally associated with nearly antiferromagnetic metals.
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                Author and article information

                Journal
                Low Temperature Physics
                Low Temperature Physics
                AIP Publishing
                1063-777X
                1090-6517
                February 2012
                February 2012
                : 38
                : 2
                : 89-153
                Article
                10.1063/1.3683408
                399a67fc-e944-4566-b8ff-104ef171f799
                © 2012
                History

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