Magnetic Field-Induced Superconductivity in the Ferromagnet URhGe
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Summary
These findings strongly suggest that excitations in which the spins rotate stimulate superconductivity in the neighborhood of a quantum phase transition under high magnetic field.
- Type
- article
- Published
- 2005-08-26
- Cited by
- 240
- References
- 13
- OpenAlex
- https://openalex.org/W2011732452
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:38460998
Keywords
Condensed matter physics, Superconductivity, Ferromagnetism, Spins, Magnetic field
References
- Magnetically mediated superconductivity in heavy fermion compounds
- The break-up of heavy electrons at a quantum critical point
- p-Wave Superconductivity in the Ferromagnetic Superconductor URhGe
- Anisotropy and pressure dependence of the upper critical field of the ferromagnetic superconductor UGe2
- Coexistence of p -state superconductivity and itinerant ferromagnetism
- Strong enhancement of superconducting T(c) in ferromagnetic phases.
- Coexistence of superconductivity and ferromagnetism in URhGe
- Magnetic-field-induced superconductivity in a two-dimensional organic conductor
- Reentrant hidden order at a metamagnetic quantum critical end point.
- Disorder-Sensitive Phase Formation Linked to Metamagnetic Quantum Criticality
- Pressure dependence of the magnetization in the ferromagnetic superconductor UGe2.
- Superconductivity on the border of itinerant-electron ferromagnetism in UGe2
Cited by
- TGD AND EEG
- Nuclear String Hypothesis
- Field Re-entrant Superconductivity Induced by the Enhancement of Effective Mass in URhGe(Condensed matter: electronic structure and electrical, magnetic, and optical properties)
- Etude des fermions lourds magnétiques UCoGe et YbRh2Si2 par mesures de transport
- Introduction to holographic superconductor models
- Spontaneous Multipole Ordering by Local Parity Mixing
- Unconventional Fermi surface in an insulating state
- A Quantum Critical Route to Field-Induced Superconductivity
- Electrical transport properties of URhGe and BiPd at very low temperature
- Quantum Hardware of Living Matter
- Upper critical field of p-wave ferromagnetic superconductors with orthorhombic symmetry
- Superconductivity Reinforced by Magnetic Field and the Magnetic Instability in Uranium Ferromagnets
- Heavy-fermion superconductivity in the Kondo-lattice system CeCu2Si2
- Interplay between different states in heavy fermion physics
- Dimensionality crossover in vortex dynamics of magnetically coupled F–S–F hybrids
- Routes to heavy-fermion superconductivity
- Spin Fluctuation and Fermi Surface Instability in Ferromagnetic Superconductors
- Heavy fermions in high magnetic field
- Relationship between Ferromagnetic Criticality and the Enhancement of Superconductivity Induced by Transverse Magnetic Fields in UCoGe
- Thermoelectricity of the ferromagnetic superconductor UCoGe
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