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Elastic filter based on coupled resonator waveguides in phononic crystal slabs

机译:基于耦合谐振器波导的弹性滤波器在声子晶板中

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In this paper we demonstrate the possibility of forming a new elastic filter structure based on the coupled resonator waveguides in phononic crystal slabs (CRAW) with superior performance over the conventional filters. The structures are made by etching a honeycomb array of holes in a free standing slab. This phononic slab structure exhibits an absolute phononic band gap for all polarizations of guided waves inside the slab including the Lamb and Love waves. We present an analysis of a different family of waveguides in phononic-crystal slabs, and illustrate the considerations that must be applied to achieve single-mode guided bands in these structures.Consequently, an unusual family of selective elastic filters composed of several single resonators that are coupled periodically through evanescent waves is obtained. The elastic energy is localized in the extended defect formed by the collective coupled resonators. The frequencies of the filters are sensitive to the geometrical parameters and to the separation distance between the indivival resonators. Numerical simulations are performed using the finite element method and considering Zinc-Oxide slab.
机译:在本文中,我们证明了基于耦合的谐振器波导(ClaW)的耦合谐振器波导,以具有优异的传统过滤器的性能的可能性。通过在自由竖立板中蚀刻蜂窝孔阵列来制造结构。这种帖子板结构表现出绝对的声隙带隙,用于包括羊肉和爱波的板内的引导波的所有偏振。我们在声子晶板中对不同的波导家族进行了分析,并说明了必须应用于在这些结构中实现单模引导频带的考虑因素。应该是由几个单一谐振器组成的单模引导频带。通过渐逝波周期性地耦合。弹性能量在由集体耦合谐振器形成的延长缺陷中定位。滤波器的频率对几何参数敏感,并且在indival谐振器之间的分离距离。使用有限元方法和考虑氧化锌板进行数值模拟。

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