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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Optimized reflector stacks for solidly mounted bulk acoustic wave resonators
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Optimized reflector stacks for solidly mounted bulk acoustic wave resonators

机译:针对坚固安装的体声波谐振器的优化反射器堆栈

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The quality factor (Q) of a solidly mounted bulk acoustic wave resonator (SMR) is limited by substrate losses, because the acoustic mirror is traditionally optimized to reflect longitudinal waves only. We propose two different design approaches derived from optics to tailor the acoustic mirror for effective reflection of both longitudinal and shear waves. The first one employs the stopband theory in optics; the second one takes advantage of the periodic nature of reflection spectra in a Bragg reflector: the diffraction grating design approach. The optimized design using stopband theory reaches a calculated minimum transmission of ߝ25 dB and ߝ20 dB at resonance frequency for longitudinal and shear waves, respectively, for various practical reflector material combinations. Using the diffraction grating approach, a near quarter-wave performance is maintained for longitudinal waves, whereas shear waves reach minimum transmission below ߝ26 dB. However, this design does necessitate relatively thick layers. The experimental results show good agreement with finite element models (FEM). The extracted 1-D Q for the realized shear optimized devices was increased to around 3300.
机译:固体安装的体声波谐振器(SMR)的品质因数(Q)受衬底损耗的限制,因为传统上将声镜优化为仅反射纵波。我们提出了两种源自光学的不同设计方法,以定制声学反射镜,以有效反射纵向波和剪切波。第一个在光学中采用了阻带理论。第二种方法利用了布拉格反射器中反射光谱的周期性:衍射光栅设计方法。对于各种实际的反射器材料组合,使用阻带理论的优化设计分别在纵波和横波的共振频率下分别达到ߝ25dB和ߝ20dB的最小计算透射率。使用衍射光栅方法,纵波保持近四分之一波的性能,而剪切波在ߝ26dB以下达到最小透射率。但是,这种设计确实需要相对较厚的层。实验结果表明与有限元模型(FEM)有很好的一致性。为实现的剪切优化设备提取的一维Q增加到3300左右。

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