Target-skyrmions and skyrmion clusters in nanowires of chiral magnets
arXiv:1311.6283 · doi:10.1051/epjconf/20147505002
Abstract
In bulk non-centrosymmetric magnets the chiral Dzyaloshinskii-Moriya exchange stabilizes tubular skyrmions with a reversed magnetization in their centers. While the double-twist is favorable in the center of a skyrmion, it gives rise to an excess of the energy density at the outskirt. Therefore, magnetic anisotropies are required to make skyrmions more favorable than the conical spiral state in bulk materials. Using Monte Carlo simulations, we show that in magnetic nanowires unusual skyrmions with a doubly twisted core and a number of concentric helicoidal undulations (target-skyrmions) are thermodynamically stable even in absence of single-ion anisotropies. Such skyrmions are free of magnetic charges and, since the angle describing the direction of magnetization at the surface depends on the radius of the nanowire and an applied magnetic field, they carry a non-integer skyrmion charge s > 1. This state competes with clusters of spatially separated s=1 skyrmions. For very small radii, the target-skyrmion transforms into a skyrmion with s < 1, that resembles the vortex-like state stabilized by surface-induced anisotropies.
References in corpus (3)
Cited by in corpus (28)
- Beyond skyrmions: Review and perspectives of alternative magnetic quasiparticles
- Skyrmion-electronics: Writing, deleting, reading and processing magnetic skyrmions toward spintronic applications
- The properties of isolated chiral skyrmions in thin magnetic films
- Control and manipulation of a magnetic skyrmionium in nanostructures
- Direct imaging of a zero-field target skyrmion and its polarity switch in a chiral magnetic nanodisk
- Creation and confirmation of Hopfions in magnetic multilayer systems
- Ground state search, hysteretic behaviour, and reversal mechanism of skyrmionic textures in confined helimagnetic nanostructures
- Skyrmion dynamics in chiral ferromagnets
- Binding a Hopfion in Chiral Magnet Nanodisk
- Hopfions in chiral magnets
- Chiral Magnetic Skyrmions with Arbitrary Topological Charge ("skyrmionic sacks")
- Electrical Probing of Field-Driven Cascading Quantized Transitions of Skyrmion Cluster States in MnSi Nanowires
- Multiplet of skyrmion states on a curvilinear defect: skyrmion lattices as a ground state
- Dynamics of a magnetic skyrmionium driven by spin waves
- Nano-scale magnetic skyrmions and target states in confined geometries
- Controlled creation and stability of kπ-skyrmions on a discrete lattice
- Perspective on unconventional computing using magnetic skyrmions
- Current-driven skyrmionium in a frustrated magnetic system
- Field-driven metamorphoses of isolated skyrmions within the conical state of cubic helimagnets
- Hysteresis of nanocylinders with Dzyaloshinskii-Moriya interaction
- Chiral skyrmion auto-oscillations in a ferromagnet under spin transfer torque
- Localized spin waves in isolated skyrmions
- Bi-stability of magnetic skyrmions in ultrathin multilayer nanodots induced by magnetostatic interaction
- Stability of in-plane and out-of-plane chiral skyrmions in epitaxial MnSi(111)/Si(111) thin films: surface twists versus easy-plane anisotropy
- Skyrmion-antiskyrmion droplets in a chiral ferromagnet
- Particle-continuum-medium duality of skyrmions
- Magnetic particles and strings in iron langasite
- Circular stripe domains and cone state vortices in disk-shaped exchange coupled magnetic heterostructures