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Dial-in Topological Metamaterials Based on Bistable Stewart Platform

机译:基于双稳态Stewart平台的拨入式拓扑超材料

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摘要

Recently, there have been significant efforts to guide mechanical energy in structures by relying on a novel topological framework popularized by the discovery of topological insulators. Here, we propose a topological metamaterial system based on the design of the Stewart Platform, which can not only guide mechanical waves robustly in a desired path, but also can be tuned in situ to change this wave path at will. Without resorting to any active materials, the current system harnesses bistablilty in its unit cells, such that tuning can be performed simply by a dial-in action. Consequently, a topological transition mechanism inspired by the quantum valley Hall effect can be achieved. We show the possibility of tuning in a variety of topological and traditional waveguides in the same system, and numerically investigate key qualitative and quantitative differences between them. We observe that even though both types of waveguides can lead to significant wave transmission for a certain frequency range, topological waveguides are distinctive as they support robust, back scattering immune, one-way wave propagation.
机译:近来,已经进行了巨大的努力,以依靠通过发现拓扑绝缘体而普及的新型拓扑框架来引导结构中的机械能。在此,我们基于Stewart平台的设计提出一种拓扑超材料系统,该系统不仅可以在所需的路径中稳健地引导机械波,而且可以进行原位调整以随意更改此波路径。当前系统在不依靠任何活性材料的情况下,在其晶胞中利用了可燃性,从而可以通过拨入操作简单地执行调整。因此,可以实现受量子谷霍尔效应启发的拓扑过渡机制。我们展示了在同一系统中调整各种拓扑波导和传统波导的可能性,并数值研究了它们之间的关键定性和定量差异。我们观察到,即使两种类型的波导都可以在一定频率范围内导致显着的波传输,但是拓扑波导却与众不同,因为它们支持鲁棒的,抗背散射免疫的单向波传播。

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