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Deep-Subwavelength Holey Acoustic Second-Order Topological Insulators

机译:深亚波长多孔声二阶拓扑绝缘子

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摘要

Higher-order topological insulators (HOTIs) belong to a new class of materials with unusual topological phases. They have garnered considerable attention due to their capabilities in confining energy at the hinges and corners, which is entirely protected by the topology, and have thus become attractive structures for acoustic wave studies and control. However, for most practical applications at audible and low frequencies, compact and subwavelength implementations are desirable in addition to providing robust guiding of sound beyond a single-frequency operation. Here, a holey HOTI capable of sustaining deeply confined corner states 50 times smaller than the wavelength is proposed. A remarkable resilience of these surface-confined acoustic states against defects is experimentally observed, and topologically protected sound is demonstrated in three different frequency regimes. Concerning this matter, the findings will thus have the capability to push forward exciting applications for robust acoustic imaging way beyond the diffraction limit.
机译:高阶拓扑绝缘体(HOTI)属于具有异常拓扑相的新型材料。由于它们具有将能量限制在铰链和拐角处的能力,因此受到了相当大的关注,这完全受拓扑结构的保护,因此成为声波研究和控制的有吸引力的结构。然而,对于在音频和低频下的大多数实际应用,除了在单频操作之外提供可靠的声音引导之外,还需要紧凑和亚波长的实现。在此,提出了能够维持比波长小50倍的深度受限的拐角状态的有孔的HOTI。通过实验观察到了这些表面受限的声态对缺陷的显着回弹力,并在三种不同的频率范围内证明了受拓扑保护的声音。关于这个问题,研究结果将因此有能力推动令人振奋的应用,使稳健的声学成像方法超越衍射极限。

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