P3J-1 Direct Observation of Surface Acoustic Wave Interaction with a Phononic Crystal

K. Kokkonen, S. Benchabane, A. Khelif, V. Laude, M. Kaivola
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引用次数: 1

Abstract

Heterodyne laser interferometer has been used to directly study surface acoustic wave interaction with a two- dimensional phononic crystal. Acoustic waves are launched by interdigital transducers towards a square lattice of holes etched into the piezoelectric substrate. Interferometer measurements performed at frequencies below, within and above the expected band gap frequency range provide direct observation of the wave interaction with the phononic crystal, revealing anisotropic scattering into higher diffraction orders depending on the apparent grating pitch at the boundary between the phononic crystal and free surface. Furthermore, the measurements also confirm the existence of an elastic band gap, in accordance with previous electrical measurements and theoretical predictions.
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P3J-1表面声波与声子晶体相互作用的直接观测
利用外差激光干涉仪直接研究了表面声波与二维声子晶体的相互作用。声波由数字间换能器向蚀刻在压电基板上的方形晶格孔发射。在预期带隙频率范围以下、之内和以上的频率下进行的干涉仪测量提供了与声子晶体相互作用的直接观察,揭示了各向异性散射到更高的衍射阶,这取决于声子晶体和自由表面之间边界的视光栅间距。此外,测量还证实了弹性带隙的存在,与先前的电测量和理论预测一致。
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