arXiv · 2106.11910
Magnetic particles and strings in iron langasite
Abstract
Particle-like topological magnetic defects that can propagate in all spatial directions open a new dimension for design of magnetic memory and data processing devices. We show that three-dimensional magnetic skyrmions can be stabilized in non-collinear antiferromagnets, such as the Fe-langasite, Ba$_3$TaFe$_3$Si$_2$O$_{14}$. Spins in the crystallographic unit cell of this material form a 120-degree ordering transformed by competing exchange interactions into a short-period spiral, which in turn forms a basis for complex large-scale magnetic superstructures stabilized by Dzyaloshinskii-Moriya interactions and applied magnetic fields. We derive an effective continuum model describing modulated states of Fe-langasite at the 100 nm scale and explore its magnetic phases and topological defects. The order parameter space of this model is similar to that of superfluid $^{3}$He-A and the three-dimensional topological defect is closely related to the Shankar monopole and hedgehog soliton in the Skyrme model of baryons.
Explore related subjects
Keep this discovery
Evgenii Barts, Maxim V. Mostovoy. 2021-06-22. Magnetic particles and strings in iron langasite. https://doi.org/10.1038/s41535-021-00408-4
Cite the original work for its findings. Save a collection to share your selection of sources.