Abstract Non-Hermitian topological phase, with the novel concepts such as exceptional points and skin effect, has opened up a new paradigm beyond Hermitian topological physics. Exceptional ring semimetal, featured by a stable ring of exceptional points in three dimensions, exhibits first-order topological properties, including topological surface states and surface-dependent skin effect. Nevertheless, despite extensive research on Hermitian higher-order insulators and semimetals, higher-order exceptional ring semimetal is just emerging. Here, we report the first realization of a higher-order Weyl exceptional ring semimetal in a three-dimensional lossy acoustic metamaterial. The non-Hermitian higher-order topology reflects in the topological hinge states and hinge-dependent skin effect. Counterintuitively, the topological hinge states maintain purely real energy even under a high loss level, ensuring robust hinge-state propagation. Our findings evidence the non-Hermitian higher-order bulk-boundary correspondence of exceptional ring semimetal, and may pave the way for non-Hermitian functional acoustic devices.
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Yejian Hu
Zhenhang Pu
Xiangru Chen
National Science Review
Wuhan University
Wuhan University of Technology
Wuhan University of Science and Technology
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Hu et al. (Fri,) studied this question.
www.synapsesocial.com/papers/69df2c1de4eeef8a2a6b1097 — DOI: https://doi.org/10.1093/nsr/nwag221
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