Oriented 3D Magnetic Biskyrmions in MnNiGa Bulk Crystals

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Abstract

A biskyrmion consists of two bound, topologically stable, skyrmion spin textures. These coffee-bean-shaped objects are observed in real space in thin plates using Lorentz transmission electron microscopy (LTEM). From LTEM imaging alone, it is not clear whether biskyrmions are surface-confined objects, or, analogous to skyrmions in noncentrosymmetric helimagnets, 3D tube-like structures in a bulk sample. Here, the biskyrmion form factor is investigated in single- and polycrystalline-MnNiGa samples using small-angle neutron scattering. It is found that biskyrmions are not long-range ordered, not even in single crystals. Surprisingly all of the disordered biskyrmions have their in-plane symmetry axis aligned along certain directions, governed by the magnetocrystalline anisotropy. This anisotropic nature of biskyrmions may be further exploited to encode information.

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Li, X., Zhang, S., Li, H., Venero, D. A., White, J. S., Cubitt, R., … Wang, F. (2019). Oriented 3D Magnetic Biskyrmions in MnNiGa Bulk Crystals. Advanced Materials, 31(17). https://doi.org/10.1002/adma.201900264

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