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Tunability of aluminum nitride acoustic resonators: a phenomenological approach

机译:氮化铝声谐振器的可调谐性:一种现象学方法

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摘要

A phenomenological approach is developed to identify the physical parameters causing the dc-voltage-induced tunability of aluminum nitride (AlN) acoustic resonators, widely used for RF filters. The typical resonance frequency of these resonators varies from 2.038 GHz at -200 V to 2.062 GHz at +200 V. This indicates, based on these RF measurements versus dc bias and the model used, that the AlN stiffness variation versus dc bias is the prominent effect because both resonance and antiresonance experience a similar variation, respectively, 24 MHz and 19 MHz at 400 V. Picosecond ultrasonics were also used to prove independently that the acoustic velocity (and therefore AlN stiffness) is sensitive to dc bias and that the variation induced is comparable to that extracted from the resonance measurements. It turned out that the stiffness relative variation for an electric field of 1 V/μm extracted from picosecond ultrasonics is 54 ppm-μm/V. This is in good agreement with the value extracted from the RF measurements, namely 57.2 ppm-μm/V. The overall tunability of these AlN resonators reaches 1.1%, which is an interesting figure, although probably not high enough for genuine applications.
机译:开发了一种现象学方法来识别导致直流电压感应的氮化铝(AlN)声谐振器的可调谐性的物理参数,该谐振器广泛用于RF滤波器。这些谐振器的典型谐振频率在-200 V时为2.038 GHz至+200 V时为2.062 GHz。这表明,基于这些射频测量值与直流偏置的关系以及所用的模型,AlN刚度变化与直流偏置的关系最为突出因为共振和反共振在400 V时分别经历了24 MHz和19 MHz的相似变化,所以产生了影响。皮秒超声波还用于独立证明声速(以及AlN刚度)对直流偏置敏感,并且该变化会引起与从共振测量中提取的结果相当。事实证明,从皮秒超声波中提取的1 V /μm电场的刚度相对变化为54ppm-μm/ V。这与从RF测量中提取的值(即57.2ppm-μm/ V)非常吻合。这些AlN谐振器的总体可调性达到1.1%,这是一个有趣的数字,尽管对于真正的应用来说可能不够高。

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