arXiv · 2212.02342
Skyrmion inertia in synthetic antiferromagnets
Abstract
We describe the dynamics of magnetic skyrmions in synthetic antiferromagnets (SAF), with a finite interlayer coupling. Due to the opposite gyrovector of the skyrmions in the two SAF layers, the coupled skyrmions reach a stationary regime with a spatial separation, in a direction orthogonal to their velocity. As a consequence, and contrary to the ferromagnetic situation, a transient regime necessarily occurs, with a finite acceleration, related to an inertia, and that limits its time response. The formalism developed here, based on two coupled Thiele equations, allows a quantitative description of this phenomenon. The time constant associated to the transient regime scales inversely with the antiferromagnetic coupling constant. We also show that the coupling force reaches a maximal value at a finite skyrmion separation. This sets a maximum velocity limit, beyond which the the coupling force cannot stabilize the bound state.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Sujit Panigrahy, Sougata Mallick, Joao Sampaio, Stanislas Rohart. 2022-12-05. Skyrmion inertia in synthetic antiferromagnets. https://doi.org/10.1103/physrevb.106.144405
Cite the original work for its findings. Save a collection to share your selection of sources.