Observation of moiré plasmonic skyrmion clusters.

Zhang, Lan; Wan, Lipeng; Deng, Weimin; Hou, Liang; Qiu, Jumin; Zou, Qiushun; Wang, Tongbiao; Zhao, Daomu et al. · Sci Adv · 2025

basic_science · Level V

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Abstract

Skyrmions are topological defects belonging to nontrivial homotopy classes in particle theory. Their remarkably stable topology has recently been observed in electromagnetic waves. For the evanescent fields near a surface, this has been realized so far only for elementary optical skyrmions, with a fixed skyrmion number. Here we report, both in theory and experiment, the concept of moiré plasmonic skyrmion clusters, where multiskyrmions are nested to form a large optical skyrmion cluster. By leveraging twistronics engineering of plasmonic nanostructures, we demonstrate both periodic and quasi-periodic optical skyrmions, revealing a large degree of topological control. In a misaligned composite nanostructure, the rapid inverting of optical skyrmion number is achieved, which is explained by a lattice model. This topological change of moiré plasmonic skyrmion clusters can serve as a precise beacon of the relative alignment deviation between composite nanostructures.