Observation of Dislocation Non-Hermitian Skin Effect

Fuente: arXiv
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Main Authors: Wu, Wenquan, Zhang, Qicheng, Qi, Liangjun, Zhang, Kun, Tong, Shuaishuai, Qiu, Chunyin
Format: Preprint
Published: 2025
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_version_ 1866908304272261120
author Wu, Wenquan
Zhang, Qicheng
Qi, Liangjun
Zhang, Kun
Tong, Shuaishuai
Qiu, Chunyin
author_facet Wu, Wenquan
Zhang, Qicheng
Qi, Liangjun
Zhang, Kun
Tong, Shuaishuai
Qiu, Chunyin
contents The non-Hermitian skin effect (NHSE), a striking phenomenon where a large number of states accumulate toward open boundaries, has garnered significant attention in both fundamental physics and emerging applications. Recent theoretical studies unveiled a distinctive dislocation NHSE by disentangling it from the established boundary NHSE, thereby bridging the gap between topological defects and non-Hermitian effects. In this Letter, we report the first experimental observation of the dislocation NHSE, achieved using an ingeniously designed nonreciprocal, torus-like acoustic lattice with two dislocations of opposite Burgers vectors. Our results show that the sound energy density inside the sample dramatically accumulates at one dislocation, while being unusually depleted at the other, a response distinct from all existing NHSE phenomena. This novel non-Hermitian effect not only probes the interplay between nontrivial defects and point-gap topology, but also holds promise for practical applications, such as the design of topological sound vacuum pumps.
format Preprint
id arxiv_https___arxiv_org_abs_2504_04431
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Observation of Dislocation Non-Hermitian Skin Effect
Wu, Wenquan
Zhang, Qicheng
Qi, Liangjun
Zhang, Kun
Tong, Shuaishuai
Qiu, Chunyin
Applied Physics
The non-Hermitian skin effect (NHSE), a striking phenomenon where a large number of states accumulate toward open boundaries, has garnered significant attention in both fundamental physics and emerging applications. Recent theoretical studies unveiled a distinctive dislocation NHSE by disentangling it from the established boundary NHSE, thereby bridging the gap between topological defects and non-Hermitian effects. In this Letter, we report the first experimental observation of the dislocation NHSE, achieved using an ingeniously designed nonreciprocal, torus-like acoustic lattice with two dislocations of opposite Burgers vectors. Our results show that the sound energy density inside the sample dramatically accumulates at one dislocation, while being unusually depleted at the other, a response distinct from all existing NHSE phenomena. This novel non-Hermitian effect not only probes the interplay between nontrivial defects and point-gap topology, but also holds promise for practical applications, such as the design of topological sound vacuum pumps.
title Observation of Dislocation Non-Hermitian Skin Effect
topic Applied Physics
url https://arxiv.org/abs/2504.04431