Dynamics of a vortex domain wall in a magnetic nanostrip: an application of the collective coordinate approach
arXiv:0806.3283 · doi:10.1103/PhysRevB.78.134412
Abstract
The motion of a vortex domain wall in a ferromagnetic strip of submicron width under the influence of an external magnetic field exhibits three distinct dynamical regimes. In a viscous regime at low fields the wall moves rigidly with a velocity proportional to the field. Above a critical field the viscous motion breaks down giving way to oscillations accompanied by a slow drift of the wall. At still higher fields the drift velocity starts rising with the field again but with a much lower mobility dv/dH than in the viscous regime. To describe the dynamics of the wall we use the method of collective coordinates that focuses on soft modes of the system. By retaining two soft modes, parametrized by the coordinates of the vortex core, we obtain a simple description of the wall dynamics at low and intermediate applied fields that describes both the viscous and oscillatory regimes below and above the breakdown. The calculated dynamics agrees well with micromagnetic simulations at low and intermediate values of the driving field. In higher fields, additional modes become soft and the two-mode approximation is no longer sufficient. We explain some of the significant features of vortex domain wall motion in high fields through the inclusion of additional modes associated with the half-antivortices on the strip edge.
Minor revisions as suggested by referee
References in corpus (7)
- Dynamics of domain walls in magnetic nanostrips
- Fractional vortices and composite domain walls in flat nanomagnets
- Understanding of complex periodic transformations of moving domain walls in magnetic nanostripes
- Machine-learning assistant DFT study of half-metallic full-Heusler alloy N2CaNa: structural, electronic, mechanical, and thermodynamics properties
- Rotating vortex dipoles in ferromagnets
- Topological defects in flat nanomagnets: the magnetostatic limit
- Composite domain walls in flat nanomagnets: the magnetostatic limit
Cited by in corpus (37)
- Roadmap of spin-orbit torques
- 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
- Propulsion of a domain wall in an antiferromagnet by magnons
- Effects of Disorder and Internal Dynamics on Vortex Wall Propagation
- Dynamics of ferromagnetic bimerons driven by spin currents and magnetic fields
- Parametric Auto-Excitation of Magnetic Droplet Soliton Perimeter Modes
- Dynamics of antiferromagnetic skyrmion in absence and presence of pinning defect
- Magnetization reversal assisted by half antivortex states in nanostructured circular cobalt disks
- Effects of disorder on magnetic vortex gyration
- Nonlinear dynamics of topological ferromagnetic textures for frequency multiplication
- Spacetime magnetic hopfions: from internal excitations and braiding of skyrmions
- Engineering the dynamics of topological spin textures by anisotropic spin-orbit torques
- Zeeman term for the Néel vector in a two sublattice antiferromagnet using Dzyaloshinsky-Moriya interaction and magnetic field
- Stable and unstable trajectories in a dipolar chain
- Mechanics of a ferromagnetic domain wall
- Conserved momenta of ferromagnetic solitons through the prism of differential geometry
- Antiferromagnetic Bloch line driven by spin current as room-temperature analog of a fluxon in a long Josephson junction
- Thermally induced spin torque and domain wall motion in superconductor/antiferromagnetic insulator bilayers
- Magnetic Bimeron Traveling on the Domain Wall
- Renormalization group analysis of the finite 2DXY model with fourfold anisotropy: Application to the magnetic susceptibility of a ferromagnetic ultrathin film
- Signal detection based on the chaotic motion of an antiferromagnetic domain wall
- Externally-driven transformations of vortex textures in flat submicrometer magnets
- Power optimization for domain wall motion in ferromagnetic nanowires
- Enhanced Stability of Antiferromagnetic Skyrmion during Its Motion by Anisotropic Dzyaloshinskii Moriya Interaction
- Unified theory of spin and charge in a ferromagnet
- Reversible magnetic domain reorientation induced by magnetic field pulses with fixed direction
- Topological charge and spin Hall effects due to skyrmions in canted antiferromagnets
- Gyroscopic tensor of a magnetic soliton
- Ferromagnetic resonance modes in the exchange dominated limit in cylinders of finite length
- Field theory of collinear and noncollinear magnetic order
- Nonlinear spin dynamics of ferromagnetic ring in the vortex state and its application for spin-transfer nano-oscillator
- Thermally Activated Transitions Between Micromagnetic States
- Skyrmion-deriven topological spin and charge Hall effects in diffusive antiferromagnetic thin films
- Unidirectional gliding of a cycloidal spin structure by an AC magnetic field