Abstract
Magnetic materials with noncoplanar magnetic structures can show unusual physical properties driven by nontrivial topology. Topologically-active states are often multi-q structures, which are challenging to stabilize in models and to identify in materials. Here, we use inelastic neutron-scattering experiments to show that the insulating double perovskites Ba2YRuO6 and Ba2LuRuO6 host a noncoplanar 3-q structure on the face-centered cubic lattice. Quantitative analysis of our neutron-scattering data reveals that these 3-q states are stabilized by biquadratic interactions. Our study identifies double perovskites as a highly promising class of materials to realize topological magnetism, elucidates the stabilization mechanism of the 3-q state in these materials, and establishes neutron spectroscopy on powder samples as a valuable technique to distinguish multi-q from single-q states, facilitating the discovery of topologically-nontrivial magnetic materials.
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CITATION STYLE
Paddison, J. A. M., Zhang, H., Yan, J., Cliffe, M. J., McGuire, M. A., Do, S. H., … Christianson, A. D. (2024). Cubic double perovskites host noncoplanar spin textures. Npj Quantum Materials, 9(1). https://doi.org/10.1038/s41535-024-00650-6
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