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用于表面声波器件去嵌入的直通反射线校准的数值仿真

Numerical emulation of Thru-Reflection-Line calibration for the de-embedding of Surface Acoustic Wave devices.

作者信息

Mencarelli D, Djafari-Rouhani B, Pennec Y, Pitanti A, Zanotto S, Stocchi M, Pierantoni L

机构信息

Università politecnica delle Marche, Ancona, Italy.

National Institute of Nuclear Physics, Frascati, Rome, Italy.

出版信息

Sci Rep. 2018 Jun 18;8(1):9256. doi: 10.1038/s41598-018-27511-0.

Abstract

In this contribution, a rigorous numerical calibration is proposed to characterize the excitation of propagating mechanical waves by interdigitated transducers (IDTs). The transition from IDT terminals to phonon waveguides is modeled by means of a general circuit representation that makes use of Scattering Matrix (SM) formalism. In particular, the three-step calibration approach called the Thru-Reflection-Line (TRL), that is a well-established technique in microwave engineering, has been successfully applied to emulate typical experimental conditions. The proposed procedure is suitable for the synthesis/optimization of surface-acoustic-wave (SAW) based devices: the TRL calibration allows to extract/de-embed the acoustic component, namely resonator or filter, from the outer IDT structure, regardless of complexity and size of the letter. We report, as a result, the hybrid scattering parameters of the IDT transition to a mechanical waveguide formed by a phononic crystal patterned on a piezoelectric AlN membrane, where the effect of a discontinuity from periodic to uniform mechanical waveguide is also characterized. In addition, to ensure the correctness of our numerical calculations, the proposed method has been validated by independent calculations.

摘要

在本论文中,我们提出了一种严格的数值校准方法,用于表征叉指换能器(IDT)对传播机械波的激发。IDT端子到声子波导的过渡通过一种利用散射矩阵(SM)形式的通用电路表示进行建模。特别是,在微波工程中已成熟的三步校准方法——直通-反射-线(TRL),已成功应用于模拟典型实验条件。所提出的程序适用于基于表面声波(SAW)的器件的合成/优化:TRL校准允许从外部IDT结构中提取/去嵌入声学组件,即谐振器或滤波器,而不管后者的复杂性和尺寸如何。结果,我们报告了IDT到由图案化在压电AlN膜上的声子晶体形成的机械波导的混合散射参数,其中还表征了从周期性到均匀机械波导的不连续性的影响。此外,为确保我们数值计算的正确性,所提出的方法已通过独立计算得到验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/203c/6006290/29e1b59a4298/41598_2018_27511_Fig1_HTML.jpg

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