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Inverse design of high-Q wave filters in two-dimensional phononic crystals by topology optimization

机译:通过拓扑优化在二维声子晶体中的高Q波过滤器的逆设计

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摘要

Topology optimization of a waveguide-cavity structure in phononic crystals for designing narrow band filters under the given operating frequencies is presented in this paper. We show that it is possible to obtain an ultra-high-Q filter by only optimizing the cavity topology without introducing any other coupling medium. The optimized cavity with highly symmetric resonance can be utilized as the multi-channel filter, raising filter and T-splitter. In addition, most optimized high-Q filters have the Fano resonances dear the resonant frequencies. Furthermore, our filter optimization based on the waveguide and cavity, and our simple illustration of a computational approach to Wave control in phononic crystals can be extended and applied to design other acoustic devices or even opto-mechanical devices. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文介绍了在给定的操作频率下设计用于设计窄带滤波器的声子晶体中的波导腔结构的拓扑优化。 我们表明可以通过在不引入任何其他耦合介质的情况下优化腔拓扑来获得超高Q过滤器。 具有高对称谐振的优化腔可用作多通道滤波器,升高过滤器和T型分离器。 此外,最优化的高Q过滤器具有Fano共振亲爱的谐振频率。 此外,我们基于波导和腔的过滤器优化,以及在声子晶体中的波控控制中的计算方法的简单说明可以延伸,并应用于设计其他声学装置或甚至光学装置。 (c)2016年Elsevier B.v.保留所有权利。

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