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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >A fast Green's function method for the analysis of IDT's for acousto-optical devices
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A fast Green's function method for the analysis of IDT's for acousto-optical devices

机译:用于声光设备IDT分析的快速格林函数方法

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摘要

Surface acoustic wave (SAW) interdigital transducers are key components in X-Y LiNbO/sub 3/ acousto-optical (A-O) devices. SAW interdigital transducers (IDT's) on this substrate exhibit a high spurious resonance that may reduce the A-O efficiency. In this paper we present a detailed analysis of X-Y LiNbO/sub 3/ IDT's based on a fast Green's function method (GFM). In order to correctly evaluate the spurious effects on IDT's performance, we also considered bulk terms of the Green's function. When the GFM is applied to IDT's with general topology and over a wide frequency range, the required computation time can reach quickly unacceptable values for long IDT structures. We developed a new model order reduction technique based on the singular value decomposition (SVD) for the fast generation of the IDT's frequency response. Numerical results for different configurations of X-Y LiNbO/sub 3/ IDT's are in good agreement with measured data and a correct interpretation of the spurious resonance is reported. It is pointed out that bulk wave excitation may be a serious limitation in the design of efficient, wide band IDT's for A-O devices.
机译:表面声波(SAW)叉指式换能器是X-Y LiNbO / sub 3 /声光(A-O)设备中的关键组件。此基板上的SAW叉指换能器(IDT)表现出较高的杂散谐振,可能会降低A-O效率。在本文中,我们基于快速格林函数方法(GFM)对X-Y LiNbO / sub 3 / IDT进行了详细分析。为了正确评估对IDT性能的虚假影响,我们还考虑了Green函数的总体术语。将GFM应用于具有通用拓扑并在很宽的频率范围内的IDT时,对于较长的IDT结构,所需的计算时间可能很快达到不可接受的值。我们开发了一种基于奇异值分解(SVD)的新模型降阶技术,用于快速生成IDT的频率响应。 X-Y LiNbO / sub 3 / IDT的不同配置的数值结果与实测数据非常吻合,并且报告了对寄生共振的正确解释。要指出的是,体波激励可能是A-O设备高效宽带IDT设计的严重限制。

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