What makes magnetic skyrmions different from magnetic bubbles ?
arXiv:1711.07317 · doi:10.1016/j.jmmm.2018.06.058
Abstract
A large enough piece of ferromagnet is usually not magnetized uniformly, but develops a magnetization texture. In thin films these textures can be doubly-periodic. Such are the well known magnetic bubble domains and the recently observed "skyrmion" magnetization textures in MnSi. In this paper we develop a theory of periodic magnetization textures, based on complex calculus to answer the question -- is there a difference between those two textures even if they seem to carry the same topological winding number (or topological charge) ? We find that such difference exists, facilitated by a different role played by the magnetization vector's in-plane phase. We separate classical-like and quantum-like features of magnetization textures and highlight the role of magnetic anisotropy in favouring either of these cases.
5 pages 2 figures
References in corpus (1)
Cited by in corpus (4)
- Configurational Entropy for Skyrmion-like Magnetic Structures
- Topological melting of the metastable skyrmion lattice in the chiral magnet CoZnMn
- Experimental observation of third-order effect in magnetic small-angle neutron scattering
- Metastable states of sub-micron scale ferromagnetic periodic antidot arrays