Clogging, Diode and Collective Effects of Skyrmions in Funnel Geometries
arXiv:2204.11906 · doi:10.1088/1367-2630/ac9749
Abstract
Using a particle-based model, we examine the collective dynamics of skyrmions interacting with a funnel potential under dc driving as the skyrmion density and relative strength of the Magnus and damping terms are varied. For driving in the easy direction, we find that increasing the skyrmion density reduces the average skyrmion velocity due to jamming of skyrmions near the funnel opening, while the Magnus force causes skyrmions to accumulate on one side of the funnel array. For driving in the hard direction, there is a critical skyrmion density below which the skyrmions become trapped. Above this critical value, a clogging effect appears with multiple depinning and repinning states where the skyrmions can rearrange into different clogged configurations, while at higher drives, the velocity-force curves become continuous. When skyrmions pile up near the funnel opening, the effective size of the opening is reduced and the passage of other skyrmions is blocked by the repulsive skyrmion-skyrmion interactions. We observe a strong diode effect in which the critical depinning force is higher and the velocity response is smaller for hard direction driving. As the ratio of Magnus force to dissipative term is varied, the skyrmion velocity varies in a non-linear and non-monotonic way due to the pile up of skyrmions on one side of the funnels. At high Magnus forces, the clogging effect for hard direction driving is diminished.
16 pages, 14 figures
References in corpus (12)
- Advances in the Physics of Magnetic Skyrmions and Perspective for Technology
- Skyrmion Hall Effect Revealed by Direct Time-Resolved X-Ray Microscopy
- Theory of current-driven motion of Skyrmions and spirals in helical magnets
- Rectification of Swimming Bacteria and Self Driven Particle Systems by Arrays of Asymmetric Barriers
- Quantized Transport for a Skyrmion Moving on a Two-Dimensional Periodic Substrate
- Lane reduction in driven 2d-colloidal systems through microchannels
- Asymmetric weak-pinning superconducting channels: vortex ratchets
- Skyrmion ratchet propagation: Utilizing the skyrmion Hall effect in AC racetrack storage devices
- Reversible Vector Ratchets for Skyrmion Systems
- Skyrmion Ratchet in Funnel Geometries
- Vortex dynamics in superconducting channels with periodic constrictions
- Directional Locking and the Influence of Obstacle Density on Skyrmion Dynamics in Triangular and Honeycomb Arrays
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- Magnus Induced Diode Effect for Skyrmions in Channels with Periodic Potentials
- Channeling Skyrmions: suppressing the skyrmion Hall effect in ferrimagnetic nanostripes
- Transformation of a cellular skyrmion to polyomino-like structures