Theory of type-II superconductivity in ferromagnetic metals with triplet pairing
arXiv:1712.08750 · doi:10.1063/1.5037553
Abstract
The superconducting state in uranium compounds UGe2, URhGe and UCoGe is formed at temperatures far below the Curie temperature pointing on nonconventional nature of superconductivity in these materials - namely the superconductivity with triplet pairing. The emergence of superconductivity is accompanied by the slight magnetization expulsion typical for the type-II superconductors. Following classic Abrikosov paper I develop the theory of type-II superconductivity in application to two-band ferromagnetic metal with equal spin triplet pairing.
11 pages, 5 figures
References in corpus (5)
- Superconductivity on the border of weak itinerant ferromagnetism in UCoGe
- Ginzburg-Landau theory of vortices in a multi-gap superconductor
- Absence of Meissner State and Robust Ferromagnetism in the Superconducting State of UCoGe: Possible Evidence of Spontaneous Vortex State
- Topological properties of ferromagnetic superconductors
- Phase diagram of UCoGe