Air damping of mechanical microbeam resonators with optical excitation and optical detection

Hua Chen, D. Drilhole, O. Robert
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引用次数: 4

Abstract

This paper is dedicated to both Finite Element Method (FEM) simulations and optical measurements of the mechanical quality factor dependence on air pressure of microbeam resonators. Firstly, a summary of previous theoretical works is given, for two different air cavity cases. Different damping mechanisms are discussed. Secondly, FEM simulation results using MEMCAD software are obtained for resonators with small air gaps. Finally, prototypes of silicon resonators are fabricated using SOI technology, and characterized under a precisely controlled vacuum chamber. In order to investigate both air cavity cases, optical excitation/detection is used. Good agreements are obtained with theory and simulations.
具有光激发和光检测的机械微光束谐振器的空气阻尼
本文对微束谐振器的机械质量因子随气压的变化进行了有限元模拟和光学测量。首先,针对两种不同的空腔情况,对前人的理论工作进行了总结。讨论了不同的阻尼机制。其次,利用MEMCAD软件对小气隙谐振腔进行了有限元仿真。最后,利用SOI技术制作了硅谐振器的原型,并在精确控制的真空室中进行了表征。为了研究这两种空腔情况,使用了光激发/探测。理论和仿真结果表明,两者吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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