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Influence of Crystal Quality on the Excitation and Propagation of Surface and Bulk Acoustic Waves in Polycrystalline AlN Films

机译:晶体质量对多晶AlN膜中表面声波和体声波激发和传播的影响

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摘要

We investigate the excitation and propagation of acoustic waves in polycrystalline aluminum nitride films along the directions parallel and normal to the c-axis. Longitudinal and transverse propagations are assessed through the frequency response of surface acoustic wave and bulk acoustic wave devices fabricated on films of different crystal qualities. The crystalline properties significantly affect the electromechanical coupling factors and acoustic properties of the piezoelectric layers. The presence of misoriented grains produces an overall decrease of the piezoelectric activity, degrading more severely the excitation and propagation of waves traveling transversally to the c-axis. It is suggested that the presence of such crystalline defects in c-axis-oriented films reduces the mechanical coherence between grains and hinders the transverse deformation of the film when the electric field is applied parallel to the surface.
机译:我们研究了多晶氮化铝薄膜中沿平行于和垂直于c轴方向的声波的激发和传播。纵向和横向传播是通过在不同晶体质量的薄膜上制造的表面声波和体声波器件的频率响应进行评估的。晶体性质显着影响压电层的机电耦合系数和声学性质。取向错误的晶粒的存在会导致压电活性的整体下降,从而更严重地降低横向传播到c轴的波的激发和传播。建议当在平行于表面施加电场时,在c轴取向的薄膜中存在此类晶体缺陷会降低晶粒之间的机械凝聚力,并阻碍薄膜的横向变形。

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