Skyrmion Dynamics and Topological Sorting on Periodic Obstacle Arrays
arXiv:2001.08835 · doi:10.1088/1367-2630/ab8045
Abstract
We examine skyrmions under a dc drive interacting with a square array of obstacles for varied obstacle size and damping. When the drive is applied in a fixed direction, we find that the skyrmions are initially guided in the drive direction but also move transverse to the drive due to the Magnus force. The skyrmion Hall angle, which indicates the difference between the skyrmion direction of motion and the drive direction, increases with drive in a series of quantized steps as a result of the locking of the skyrmion motion to specific symmetry directions of the obstacle array. On these steps, the skyrmions collide with an integer number of obstacles to create a periodic motion. The transitions between the different locking steps are associated with jumps or dips in the velocity-force curves. In some regimes, the skyrmion Hall angle is actually higher than the intrinsic skyrmion Hall angle that would appear in the absence of obstacles. In the limit of zero damping, the skyrmion Hall angle is 90, and we find that it decreases as the damping increases. For multiple interacting skyrmion species in the collective regime, we find jammed behavior at low drives where the different skyrmion species are strongly coupled and move in the same direction. As the drive increases, the species decouple and each can lock to a different symmetry direction of the obstacle lattice, making it possible to perform topological sorting in analogy to the particle sorting methods used to fractionate different species of colloidal particles moving over two-dimensional obstacle arrays.
23 pages, 21 figures
References in corpus (11)
- 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
- Capturing of a Magnetic Skyrmion with a Hole
- Real-Space Berry Phases - Skyrmion Soccer
- Colloidal transport through optical tweezer arrays
- Active Microrheology in Active Matter Systems: Mobility, Intermittency and Avalanches
- Reversible Vector Ratchets for Skyrmion Systems
- Emergent Geometric Frustration of Artificial Magnetic Skyrmion Crystals
- Slow steady flow of a skyrmion lattice in a confined geometry probed by resistance narrow-band noise
- Transverse Commensurability Effect for Vortices in Periodic Pinning Arrays
Cited by in corpus (13)
- Statics and Dynamics of Skyrmions Interacting with Pinning: A Review
- Directional Locking Effects for Active Matter Particles Coupled to a Periodic Substrate
- Guided Skyrmion Motion Along Pinning Array Interfaces
- Chiral Skyrmions Interacting with Chiral Flowers
- Shapiro Steps and Nonlinear Skyrmion Hall Angles For dc and ac Driven Skyrmions on a Two Dimensional Periodic Substrate
- Clogging, Dynamics and Reentrant Fluid for Active Matter on Periodic Substrates
- Spontaneous Skyrmion Conformal Lattice and Transverse Motion During dc and ac Compression
- Commensuration Effects on Skyrmion Hall Angle and Drag for Manipulation of Skyrmions on Two-Dimensional Periodic Substrates
- Directional Locking and the Influence of Obstacle Density on Skyrmion Dynamics in Triangular and Honeycomb Arrays
- Skyrmion Dynamics and Transverse Mobility: Skyrmion Hall Angle Reversal on 2D Periodic Substrates with dc and Biharmonic ac Drives
- Skyrmion Pinball and Directed Motion on Obstacle Arrays
- Collective Effects and Pattern Formation for Directional Locking of Disks Moving Through Obstacle Arrays
- Topological sorting of magnetic colloidal bipeds