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Observation of dislocation-induced topological modes in a three-dimensional acoustic topological insulator

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arxiv 2104.13161 v2 pith:XIS72UPT submitted 2021-04-27 cond-mat.mes-hall physics.app-ph

Observation of dislocation-induced topological modes in a three-dimensional acoustic topological insulator

classification cond-mat.mes-hall physics.app-ph
keywords topologicalmodesthree-dimensionalhelicalacousticdefectsdislocation-inducedinsulator
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The interplay between real-space topological lattice defects and the reciprocal-space topology of energy bands can give rise to novel phenomena, such as one-dimensional topological modes bound to screw dislocations in three-dimensional topological insulators. We obtain direct experimental observations of dislocation-induced helical modes in an acoustic analog of a weak three-dimensional topological insulator. The spatial distribution of the helical modes is found through spin-resolved field mapping, and verified numerically by tight-binding and finite-element calculations. These one-dimensional helical channels can serve as robust waveguides in three-dimensional media. Our experiment paves the way to studying novel physical modes and functionalities enabled by topological lattice defects in three-dimensional classical topological materials.

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