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首页> 外文期刊>Physics Letters, A >Interaction of Love waves with coupled cavity modes in a 2D holey phononic crystal
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Interaction of Love waves with coupled cavity modes in a 2D holey phononic crystal

机译:2D HOLY声晶晶体中耦合腔模式的爱波的相互作用

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The interaction of Love waves with square array of pillars deposited on a cavity defined in a 2D holey phononic crystal is numerically investigated using Finite Element Method. First, the existence of SH surface modes is demonstrated separately for phononic crystals that consist of square arrayed holes, or rectangular arrayed Ni pillars, respectively in, or on, a SiO2 film deposited on a ST-cut quartz substrate. The coupling between SH modes and torsional mode in pillars induces a transmission dip that occurs at a frequency located in the range of the band-gap of the holey phononic crystal. Second, a cavity is constructed by removing lines of holes in the holey phononic crystal and results in a transmission peak that matches the dip. The optimal geometrical parameters enable us to create a coupling of the cavity mode and the localized pillar mode by introducing lines of pillars into the cavity, which significantly improved the efficiency of the cavity without increasing the crystal size. The obtained results will pave the way to implement advanced designs of high-performance electroacoustic sensors based on coupling modes in phononic crystals. (C) 2019 Elsevier B.V. All rights reserved.
机译:使用有限元方法,用有限元方法对沉积在2D孔晶晶体中定义的腔体上沉积在2D孔隙晶体中定义的腔体的方形阵列的相互作用。首先,对于沉积在ST-CUT石英底物上的SiO 2膜,分别分别对SH表面模式分别进行了SH表面模式的存在性,该晶体分别在或矩形阵列。柱中的SH模式和扭转模式之间的耦合引起频率,其发生在频率的频率,位于孔隙晶体的带间隙范围内。其次,通过在孔隙晶体中移除孔的线来构造腔,并导致与倾角匹配的传输峰值来构造。最佳几何参数使我们能够通过将柱的线路引入​​腔体来创建腔模式和局部柱形模式的耦合,这显着提高了腔的效率而不会增加晶体尺寸。所获得的结果将根据声子晶体中的耦合模式实现高性能电声传感器的先进设计。 (c)2019 Elsevier B.v.保留所有权利。

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