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Piezoelectric phononic plates: retrieving the frequency band structure via all-electric experiments

机译:压电声波板:通过全电动实验检索频带结构

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摘要

We propose an experimental technique based on all-electric measurements to retrieve the frequency response of a one-dimensional piezoelectric phononic crystal plate, structured periodically with millimeter-scaled metallic strips on its two surfaces. The metallic electrodes, used for the excitation of Lamb-like guided modes in the plate, ensure at the same time control of their dispersion by means of externally loaded electric circuits that offer non-destructive tunability in the frequency response of these structures. Our results, in very good agreement with finite-element numerical predictions, reveal interesting symmetry aspects that are employed to analyze the frequency band structure of such crystals. More importantly, Lamb-like guided modes interact with electric-resonant bands induced by inductance loads on the plate, whose form and symmetry are discussed and analyzed in depth, showing unprecedented dispersion characteristics.
机译:我们提出了一种基于全电测量的实验技术,以检索一维压电声子板的频率响应,周期性地用毫米缩放的金属条在其两个表面上呈周期性地构造。 金属电极,用于激发板中的羊肉状导向模式,同时通过外部加载电路控制它们的分散,在这些结构的频率响应中提供非破坏性可调性。 我们的结果与有限元数值预测非常好,揭示了用于分析这种晶体的频带结构的有趣的对称方面。 更重要的是,羔羊状导向模式与由板上的电感载荷引起的电谐振带相互作用,其形式和对称性深入地讨论和分析,显示出前所未有的分散特性。

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