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Main Authors: Chen, Chen, Chen, Tianning, Ding, Wei, Zhu, Jian
Format: Preprint
Published: 2022
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Online Access:https://arxiv.org/abs/2203.13149
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author Chen, Chen
Chen, Tianning
Ding, Wei
Zhu, Jian
author_facet Chen, Chen
Chen, Tianning
Ding, Wei
Zhu, Jian
contents The recent exotic topological corner modes (CMs) in photonic higher-order topological insulators with long-distance interactions have attracted numerous attentions and enriched the physics than their condensed-matter counterparts. While the next-nearest-neighbour (NNN) coupling appears between NNN lattice sites unselectively, and the NNN coupling and their associated dynamics remains elusive in acoustics due to the waveguide-resonator model, an analogy of tight-binding model (TBM), drastically hinders its NNN coupling. Here, in acoustics, we demonstrate selective NNN coupling-induced CMs in split-ring resonators-based kagome crystal and observe dual-band CMs. Three types of CMs are demonstrated in the first bulk gap which can be explained by TBM considering NNN coupling and one type of CMs is observed in the second. All of these findings are verified theoretically and experimentally which reveals rich physics in acoustics, opening a new way towards tunable or multi-band metamaterials design, and offering opportunities for intriguing acoustic manipulation and energy localization.
format Preprint
id arxiv_https___arxiv_org_abs_2203_13149
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Observation of Dual-band Topological Corner Modes in Acoustic Kagome Lattice with Long-range Interactions
Chen, Chen
Chen, Tianning
Ding, Wei
Zhu, Jian
Applied Physics
The recent exotic topological corner modes (CMs) in photonic higher-order topological insulators with long-distance interactions have attracted numerous attentions and enriched the physics than their condensed-matter counterparts. While the next-nearest-neighbour (NNN) coupling appears between NNN lattice sites unselectively, and the NNN coupling and their associated dynamics remains elusive in acoustics due to the waveguide-resonator model, an analogy of tight-binding model (TBM), drastically hinders its NNN coupling. Here, in acoustics, we demonstrate selective NNN coupling-induced CMs in split-ring resonators-based kagome crystal and observe dual-band CMs. Three types of CMs are demonstrated in the first bulk gap which can be explained by TBM considering NNN coupling and one type of CMs is observed in the second. All of these findings are verified theoretically and experimentally which reveals rich physics in acoustics, opening a new way towards tunable or multi-band metamaterials design, and offering opportunities for intriguing acoustic manipulation and energy localization.
title Observation of Dual-band Topological Corner Modes in Acoustic Kagome Lattice with Long-range Interactions
topic Applied Physics
url https://arxiv.org/abs/2203.13149