Science · 2005 · 311 citations · 13 references
Superconducting MaterialSuperconductivity OccursEngineeringCrystal B AxisCritical CurrentsMagnetismSuperconductivityQuantum MaterialsSuperconducting DevicesLow-temperature SuperconductivityMaterials ScienceHigh-tc SuperconductivityStimulate SuperconductivityPhysicsQuantum MagnetismSpintronicsFerromagnetismHigh-temperature SuperconductivityNatural SciencesCondensed Matter PhysicsApplied PhysicsMagnetic Field-induced SuperconductivityQuantum Superconductivity
In several metals, including URhGe, superconductivity has recently been observed to appear and coexist with ferromagnetism at temperatures well below that at which the ferromagnetic state forms. However, the material characteristics leading to such a state of coexistence have not yet been fully elucidated. We report that in URhGe there is a magnetic transition where the direction of the spin axis changes when a magnetic field of 12 tesla is applied parallel to the crystal b axis. We also report that a second pocket of superconductivity occurs at low temperature for a range of fields enveloping this magnetic transition, well above the field of 2 tesla at which superconductivity is first destroyed. Our findings strongly suggest that excitations in which the spins rotate stimulate superconductivity in the neighborhood of a quantum phase transition under high magnetic field.
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Magnetically mediated superconductivity in heavy fermion compounds
N. D. Mathur, F. M. Grosche, S. R. Julian et al. · Nature · 1998 · 1.6K citations
Heavy Fermion Compounds, Magnetism, Superconducting Material +9
Superconductivity on the border of itinerant-electron ferromagnetism in UGe2
S. S. Saxena, P. Agarwal, K. Ahilan et al. · Nature · 2000 · 1.5K citations
Magnetism, Superconducting Material, High-tc Superconductivity +7
Coexistence of superconductivity and ferromagnetism in URhGe
Dai Aoki, Andrew Huxley, E. Ressouche et al. · Nature · 2001 · 1K citations
Magnetism, Superconducting Material, High-tc Superconductivity +7
The break-up of heavy electrons at a quantum critical point
J. Custers, P. Gegenwart, H. Wilhelm et al. · Nature · 2003 · 688 citations · Full text