Dynamics of two ferromagnetic insulators coupled by superconducting spin current
arXiv:2107.09959 · doi:10.1103/PhysRevLett.128.167701
Abstract
A conventional superconductor sandwiched between two ferromagnets can maintain coherent equilibrium spin current. This spin supercurrent results from the rotation of odd-frequency spin correlations induced in the superconductor by the magnetic proximity effect. In the absence of intrinsic magnetization, the superconductor cannot maintain multiple rotations of the triplet component but instead provides a Josephson type weak link for the spin supercurrent. We determine the analogue of the current-phase relation in various circumstances and show how it can be accessed in experiments on dynamic magnetization. In particular, concentrating on the magnetic hysteresis and the ferromagnetic resonance response, we show how the spin supercurrent affects the nonequilibrium dynamics of magnetization which depends on a competition between spin supercurrent mediated static exchange contribution and a dynamic spin pumping contribution. Depending on the outcome of this competition, a mode crossing in the system can either be an avoided crossing or mode locking.
6 pages, 5 figures; Supplementary material 5 pages, 3 figures
References in corpus (7)
- Inverse proximity effect in superconductor-ferromagnet bilayer structures
- Revealing the magnetic proximity effect in EuS/Al bilayers through superconducting tunneling spectroscopy
- Spin Josephson effect in ferromagnet/ferromagnet tunnel junctions
- Exceptional points in dissipatively coupled spin dynamics
- Spin transport parameters of NbN thin films characterised by spin pumping experiments
- Proximity effect-assisted absorption of spin currents in superconductors
- Superconductivity provides a giant enhancement to the spin battery effect
Cited by in corpus (9)
- Superconductor-ferromagnet hybrids for non-reciprocal electronics and detectors
- Magnon-Cooparons in magnet-superconductor hybrids
- Quasiclassical theory for antiferromagnetic metals
- Spin supercurrent in superconductor/ferromagnet van-der-Waals heterostructures
- Proximity effect and p-wave superconductivity in s-wave superconductor/helimagnet heterostructures
- Spin Pumping into two-dimensional systems
- Ultra-strong coupling of two ferromagnets via Meissner currents
- Triplet correlations in superconductor/antiferromagnet heterostructures: dependence on type of antiferromagnetic ordering
- Using superconductivity to control magnetism: a facet of superconducting spintronics