4.8 Article

Realization of an Acoustic Third-Order Topological Insulator

Journal

PHYSICAL REVIEW LETTERS
Volume 122, Issue 24, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.122.244301

Keywords

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Funding

  1. Singapore Ministry of Education [MOE2018-T2-1-022, MOE2015-T2-2-008, MOE2016-T3-1-006, RG174/16 (S)]
  2. National Natural Science Foundation of China [61801426]

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The recent discovery of higher-order topological insulators (TIs) has opened new possibilities in the search for novel topological materials and metamaterials. Second-order TIs have been implemented in two-dimensional (2D) systems exhibiting topological corner states, as well as three-dimensional (3D) systems having one-dimensional (1D) topological hinge states. Third-order TIs, which have topological states three dimensions lower than the bulk (which must thus be 3D or higher), have not yet been reported. Here, we describe the realization of a third-order TI in an anisotropic diamond-lattice acoustic metamaterial. The bulk acoustic band structure has nontrivial topology characterized by quantized Wannier centers. By direct acoustic measurement, we observe corner states at two corners of a rhombohedronlike structure, as predicted by the quantized Wannier centers. This work extends topological corner states from 2D to 3D, and may find applications in novel acoustic devices.

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