Three-dimensional domain identification in a single hexagonal manganite nanocrystal

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Abstract

The three-dimensional domain structure of ferroelectric materials significantly influences their properties. The ferroelectric domain structure of improper multiferroics, such as YMnO3, is driven by a non-ferroelectric order parameter, leading to unique hexagonal vortex patterns and topologically protected domain walls. Characterizing the three-dimensional structure of these domains and domain walls has been elusive, however, due to a lack of suitable imaging techniques. Here, we present a multi-peak Bragg coherent x-ray diffraction imaging determination of the domain structure in single YMnO3 nanocrystals. We resolve two ferroelectric domains separated by a domain wall and confirm that the primary atomic displacements occur along the crystallographic c-axis. Correlation with atomistic simulations confirms the Mexican hat symmetry model of domain formation, identifying two domains with opposite ferroelectric polarization and adjacent trimerization, manifesting in a clockwise arrangement around the hat’s brim.

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Mokhtar, A. H., Serban, D., Porter, D. G., Lichtenberg, F., Collins, S. P., Bombardi, A., … Newton, M. C. (2024). Three-dimensional domain identification in a single hexagonal manganite nanocrystal. Nature Communications , 15(1). https://doi.org/10.1038/s41467-024-48002-z

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