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Demonstration of a third-order hierarchy of topological states in a three-dimensional acoustic metamaterial

机译:三维声学超材料中拓扑状态的三阶层次的示范

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Classical wave systems have constituted an excellent platform for emulating complex quantum phenomena, such as demonstrating topological phenomena in photonics and acoustics. Recently, a new class of topological states localized in more than one dimension of a D -dimensional system, referred to as higher-order topological (HOT) states, has been reported, offering an even more versatile platform to confine and control classical radiation and mechanical motion. Here, we design and experimentally study a 3D topological acoustic metamaterial supporting third-order (0D) topological corner states along with second-order (1D) edge states and first-order (2D) surface states within the same topological bandgap, thus establishing a full hierarchy of nontrivial bulk polarization–induced states in three dimensions. The assembled 3D topological metamaterial represents the acoustic analog of a pyrochlore lattice made of interconnected molecules, and is shown to exhibit topological bulk polarization, leading to the emergence of boundary states.
机译:古典波系统构成了用于模拟复杂量子现象的优异平台,例如在光子学和声学中展示拓扑现象。最近,已经报道了一系列新的拓扑状态,该级别的拓扑态在D-Dimensional系统的一个以上的维度系统中,称为高阶拓扑(热)状态,为限制和控制经典辐射和控制和控制古典辐射和控制机械运动。在这里,我们设计和实验研究了3D拓扑声学超材料支持三阶(0D)拓扑角落状态以及在同一拓扑带中的二阶(1D)边缘状态和一阶(2D)表面状态,从而建立一个非活动散装极化诱导状态的完整层次三维。组装的3D拓扑超材料代表了由互连分子制成的烧焦晶格的声学模拟,并且被示出表现出拓扑堆积极化,导致边界状态的出现。

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