arXiv · 2506.10393
Realization of Weyl elastic metamaterials with spin skyrmions
Abstract
Topological elastic metamaterials provide a topologically robust way to manipulate the phononic energy and information beyond the conventional approaches. Among various topological elastic metamaterials, Weyl elastic metamaterials stand out, as they are unique to three dimensions and exhibit numerous intriguing phenomena and potential applications. To date, however, the realization of Weyl elastic metamaterials remains elusive, primarily due to the full-vectoral nature of elastic waves and the complicated couplings between polarizations, leading to complicated and tangled three-dimensional (3D) bandstructures that unfavorable for experimental demonstration. Here, we overcome the challenge and realize an ideal, 3D printed, all-metallic Weyl elastic metamaterial with low dissipation losses. Notably, the elastic spin of the excitations around the Weyl points exhibits skyrmion textures, a topologically stable structure in real space. Utilizing 3D laser vibrometry, we reveal the projection of the Weyl points, the Fermi arcs and the unique spin characteristics of the topological surface states. Our work extends the Weyl metamaterials to elastic waves and paves a topological way to robust manipulation of elastic waves in 3D space.
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Yuang Pan, Liang Si, Miao Yang, Ning Han, Li Zhang, Qiaolu Chen, Rui Zhao, Fujia Chen, Yudong Ren, Wenhao Li, Yuze Hu, Mingyu Tong, Xinrui Li, Junyao Wu, Ronghao Bao, Weiqiu Chen, Yang Long, Bin Wu, Hongsheng Chen, Baile Zhang, Yihao Yang. 2025-06-12. Realization of Weyl elastic metamaterials with spin skyrmions. https://arxiv.org/abs/2506.10393
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