Fundamental Theory of Current-Induced Motion of Magnetic Skyrmions
arXiv:2502.09191 · doi:10.1088/1361-648X/ad861b
Abstract
Magnetic skyrmions are topological spin textures that appear in magnets with broken spatial inversion symmetry via competition between the (anti)ferromagnetic exchange interactions and the Dzyaloshinskii-Moriya interactions in a magnetic field. Their current-driven dynamics have been extensively studied aiming at spintronic applications. However, current-induced skyrmion motion exhibits diverse behaviors depending on various factors and conditions such as the type of skyrmion, driving mechanism, system geometry, direction of applied current, and type of the magnet. While this variety attracts enormous research interest of fundamental science and enriches their possibilities of technical applications, it is, at the same time, a source of difficulty and complexity that hinders their comprehensive understandings. In this article, we discuss fundamental and systematic theoretical descriptions of current-induced motion of skyrmions driven by the spin-transfer torque and the spin-orbit torque. Specifically, we theoretically describe the behaviors of current-driven skyrmions depending on the factors and conditions mentioned above by means of analyses using the Thiele equation. Furthermore, the results of the analytical theory are visually demonstrated and quantitatively confirmed by micromagnetic simulations. In particular, we discuss dependence of the direction and velocity of motion on the type of skyrmion (Bloch type and Neel type) and its helicity, the system geometry (thin plate and nanotrack), the direction of applied current (length and width direction of the nanotrack) and its spin-polarization orientation, and the type of magnet (ferromagnet and antiferromagnet). The comprehensive theory provided by this article is expected to contribute significantly to research on the manipulation and control of magnetic skyrmions by electric currents for future spintronics applications.
34 pages, 11 figures, published in Journal of Physics: Condensed Matter as a Topical Review
References in corpus (34)
- Advances in the Physics of Magnetic Skyrmions and Perspective for Technology
- Additive interfacial chiral interaction in multilayers for stabilization of small individual skyrmion at room temperature
- Skyrmion Hall Effect Revealed by Direct Time-Resolved X-Ray Microscopy
- Theory of current-driven motion of Skyrmions and spirals in helical magnets
- A new class of chiral materials hosting magnetic skyrmions beyond room temperature
- Skyrmion-skyrmion and skyrmion-edge repulsions in skyrmion-based racetrack memory
- Skyrmions and Anomalous Hall Effect in a Dzyloshinskii-Moriya Spiral Magnet
- A reversible conversion between a skyrmion and a domain-wall pair in junction geometry
- Thermally Driven Ratchet Motion of Skyrmion Microcrystal and Topological Magnon Hall Effect
- Magnon-skyrmion scattering in chiral magnets
- Rotating skyrmion lattices by spin torques and field or temperature gradients
- Inertia and chiral edge modes of a skyrmion magnetic bubble
- Staggered Dynamics in Antiferromagnets by Collective Coordinates
- Inertia, diffusion and dynamics of a driven skyrmion
- Néel-type skyrmion lattice in tetragonal polar magnet VOSeO
- Memory functions of magnetic skyrmions
- Antiferromagnetic skyrmion crystals: generation, topological Hall and topological spin Hall effect
- Real-Space Berry Phases - Skyrmion Soccer
- Fast current-induced skyrmion motion in synthetic antiferromagnets
- Room-temperature antiskyrmions and sawtooth surface textures in a noncentrosymmetric magnet with symmetry
- Skyrmion formation in a bulk chiral magnet at zero magnetic field and above room temperature
- Deterministic Generation and Guided Motion of Magnetic Skyrmions by Focused He-Ion Irradiation
- Thermoelectric spin transfer in textured magnets
- Doping control of magnetic anisotropy for stable antiskyrmion formation in schreibersite (Fe,Ni)P with symmetry
- Emergent Geometric Frustration of Artificial Magnetic Skyrmion Crystals
- Suppression of the skyrmion Hall effect in planar nanomagnets by the magnetic properties engineering: Skyrmion transport on nanotracks with magnetic strips
- Skyrmion Dynamics in the Presence of Deformation
- Skyrmion inertia in synthetic antiferromagnets
- Particle-like skyrmions interacting with a funnel obstacle
- Magnetic Skyrmion Transport in a Nanotrack With Spatially Varying Damping and Non-adiabatic Torque
- Current-induced H-shaped-skyrmion creation and their dynamics in the helical phase
- Electrically driven spin torque and dynamical Dzyaloshinskii-Moriya interaction in magnetic bilayer systems
- Thermoelectric effect of skyrmion crystal confined in a magnetic disk
- Global Rotation of Skyrmion Bags under Vertical Microwave Fields