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中国物理学会期刊

弹性声子晶体板中耦合谷拓扑边缘态与多模干涉传输

CSTR: 32037.14.aps.75.20251194

Coupling valley topological edge states and multimode interference transmission in elastic phononic crystal plates

CSTR: 32037.14.aps.75.20251194
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  • 近年来, 具有谷赝自旋自由度的拓扑谷态物理备受关注. 声子晶体中的拓扑谷边界态因其背向散射免疫传输特性, 在高效声波和弹性波波导与传感方面具有重要的应用前景. 本文基于弹性波量子谷霍尔效应类比构建了一种三角晶格谷拓扑声子晶体板, 系统研究了面外偏振弹性波谷边缘态在多层拓扑异质超胞结构中耦合行为, 揭示了有限尺寸的多层异质结构对弹性波耦合谷边缘态的形成机理与调控规律. 进一步通过拓扑传输计算, 揭示了弹性波耦合谷边缘态的多模干涉效应并验证其传输鲁棒性. 最后, 作为一种应用示例, 基于谷边缘态多模干涉效应设计了一种弹性波拓扑波长解复用器. 利用不同耦合频率下边缘态的耦合波长差异, 实现入射弹性波在抗缺陷通道中的定向分离. 本文研究为弹性波拓扑传输调控提供了新范式, 有望推动新型多功能弹性波耦合与传感器件的实用化设计.

     

    In recent years, topological valley physics with the degrees of freedom of valley pseudospin has attracted great attention. The topological valley boundary states in phononic crystals have important application prospects in efficient guidance and sensing for acoustic and elastic wave due to their unique transmission characteristics with backscattering immunity. However, the coupling effect of the valley edge states in multi-layer topological heterostructure is still a challenge in the elastic system due to the complicated multi-mode polarization of elastic waves. In this work, a valley topological phononic crystal plate with a multi-layer heterostructure is constructed to explore the multi-mode interference characteristics of the valley edge states based on the analogy of elastic wave quantum valley Hall effect. The coupling behavior of valley edge states for the out-of-plane polarized elastic wave in multi-layer topological heterostructure is systematically studied. By adjusting the layer numbers of the topological heterostructures, the formation mechanism and regulation law of coupled valley edge states for elastic wave in finite size multi-layer heterogeneous structures are revealed. Furthermore, through topological transmission calculations, the multi-mode interference effect of coupled valley edge states for elastic wave is achieved and its transmission robustness is well verified. Finally, as an application example, an elastic topological wavelength demultiplexing device is designed based on the multi-mode interference effect of valley edge state. By utilizing the difference in coupling wavelengths of elastic valley edge states at different coupling frequencies, directional separation of incident elastic waves in defect resistant channels is achieved, which can be used as a prototype model for the novel application of elastic wavelength demultiplex device. This work provides a new paradigm for the manipulation of elastic wave topological transport, which is also expected to promote the practical design of new multifunctional elastic wave coupling and sensing devices.

     

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