Magnetic Domain Walls as Hosts of Spin Superfluids and Generators of Skyrmions
arXiv:1701.08273 · doi:10.1103/PhysRevLett.119.047202
Abstract
A domain wall in a magnet with easy-axis anisotropy is shown to harbor spin superfluid associated with its spontaneous breaking of the U(1) spin-rotational symmetry. The spin superfluid is shown to have several topological properties, which are absent in conventional superfluids. First, the associated phase slips create and destroy skyrmions to obey the conservation of the total skyrmion charge, which allows us to use a domain wall as a generator and detector of skyrmions. Secondly, the domain wall engenders the emergent magnetic flux for magnons along its length, which are proportional to the spin supercurrent flowing through it, and thereby provides a way to manipulate magnons. Thirdly, the spin supercurrent can be driven by the magnon current traveling across it owing to the spin transfer between the domain wall and magnons, leading to the magnonic manipulation of the spin superfluid. The theory for superfluid spin transport within the domain wall is confirmed by numerical simulations.
6 pages, 4 figures, 3 pages of supplemental material. Accepted for publication in PRL
References in corpus (7)
- Magnon-skyrmion scattering in chiral magnets
- Dynamics of domain walls in magnetic nanostrips
- Inertia, diffusion and dynamics of a driven skyrmion
- Electron Transport Driven by Nonequilibrium Magnetic Textures
- Spin Hall phenomenology of magnetic dynamics
- Non-Local Transport Mediated by Spin-Supercurrents
- Theory of spin magnetohydrodynamics
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