Lamb波谐振器加载非互易射频器件

Ting Lu, J. Schneider, Xiating Zou, Sidhant Tiwari, Z. Yao, G. Carman, R. Candler, Y. Wang
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引用次数: 2

摘要

在本文中,我们探讨了在Lamb波声学平台上的参数放大,以开发非线性和非互易器件。声波平台相对于电磁平台的优势在于其在无线电频率上的低损耗和短波长,这使得设备占地面积小,质量系数高。与表面声波相比,兰姆波具有更高的相速度,支持更高频率的工作,并且具有制造公差。为了实现参数放大,利用氮化铝的固有非线性刚度对不同频率的声波进行耦合。新的兰姆波谐振器结构和非互易器件的实现在理论和仿真上都得到了验证。兰姆波换能器的实验证明了参数效应和氮化铝薄膜的非线性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lamb Wave Resonator Loaded Non-reciprocal RF Devices
In this paper we explore parametric amplification on the Lamb wave acoustic platform for the purpose of developing nonlinear and non-reciprocal devices. The strength of the acoustic wave platform over the electromagnetic platform is its low loss and short wavelength at radio frequency which enables devices with a small footprint and high quality factor. Compared to surface acoustic waves, Lamb waves exhibit much higher phase velocity which support higher frequency operation with fabrication tolerance. To realize parametric amplification, the intrinsic nonlinear stiffness of aluminum nitride is used to couple acoustic waves at different frequencies. Novel Lamb wave resonator structures and non-reciprocal devices implementation have been proven in theory and simulation. Experiment of Lamb wave transducers demonstrates parametric effects and proves nonlinearity in AlN thin films.
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