AlN纳米板谐振器底部电极形貌对品质因子的影响

Z. Qian, M. Rinaldi
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引用次数: 1

摘要

本文报道了AlN纳米板谐振器(NPRs)底部电极形貌对质量因子影响的实验研究。我们发现,在200 nm厚的AlN纳米板下采用70 nm厚的铂层作为交叉电极,可以实现高频(~744 MHz)侧向伸缩振动模式的高效压电转导,并且质量因子高达~1300。如此高的质量因子值可与采用反电极设计(采用无图案浮动板作为底部电极)的参考器件相媲美。底部电极的平滑过渡地形,更具体地说,图案交错电极的锥形边缘被认为是实现高质量因素的关键因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Bottom Electrode Topography in AlN Nano Plate Resonators on Quality Factor
This paper reports on the experimental study of the effects of bottom electrode topography in AlN nano plate resonators (NPRs) on quality factor. We show that efficient piezoelectric transduction of a high frequency (~744 MHz) lateral-extensional mode of vibration and a quality factor as high as ~1300 can be achieved when a 70 nm thick platinum layer is employed as the interdigitated electrode underneath of a 200 nm thick AlN nano plate. Such a high value of quality factor is comparable to that achieved in reference devices with inversed electrode design (employing an unpatterned floating plate as the bottom electrode). The smoothly-transitioned topography of the bottom electrode, more specifically, the tapered edge of the patterned interdigitated electrode is identified as the key contributing factor to the achievement of high quality factors.
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