Comparing the Dynamics of Skyrmions and Superconducting Vortices
arXiv:1312.5282 · doi:10.1016/j.physc.2014.03.029
Abstract
Vortices in type-II superconductors have attracted enormous attention as ideal systems in which to study nonequilibrium collective phenomena, since the self-ordering of the vortices competes with quenched disorder and thermal effects. Dynamic effects found in vortex systems include depinning, nonequilibrium phase transitions, creep, structural order-disorder transitions, and melting. Understanding vortex dynamics is also important for applications of superconductors which require the vortices either to remain pinned or to move in a controlled fashion. Recently, topological defects called skyrmions have been realized experimentally in chiral magnets. Here we highlight similarities and differences between skyrmion dynamics and vortex dynamics. Many of the previous ideas and experimental setups that have been applied to superconducting vortices can also be used to study skyrmions. We also discuss some of the differences between the two systems, such as the potentially large contribution of the Magnus force in the skyrmion system that can dramatically alter the dynamics and transport properties.
7 pages, 5 postscript figures. Proceeding of the Vortex VIII Conference
References in corpus (7)
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Cited by in corpus (6)
- Filming the formation and fluctuation of Skyrmion domains by cryo-Lorentz Transmission Electron Microscopy
- The effect of the Magnus force on skyrmion relaxation dynamics
- Topological dynamics and current-induced motion in a skyrmion lattice
- Self-dual solitons in a generalized Chern-Simons baby Skyrme model
- Magnus Induced Diode Effect for Skyrmions in Channels with Periodic Potentials
- Directional Locking and the Influence of Obstacle Density on Skyrmion Dynamics in Triangular and Honeycomb Arrays