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基于双环级联光学微环谐振器的硅应变检测研究

[Study on Strain Detection with Si Based on Bicyclic Cascade Optical Microring Resonator].

作者信息

Tang Jun, Lei Long-hai, Zhang Wei, Zhang Tian-en, Xue Chen-yang, Zhang Wen-dong, Liu Jun

出版信息

Guang Pu Xue Yu Guang Pu Fen Xi. 2016 Mar;36(3):874-9.

Abstract

Optical micro-ring resonator prepared on Silicon-On-Insulator (SOI) has high sensitivity, small size and low mode volume. Its high sensitivity has been widely applied to the optical information transmission and inertial navigation devices field, while it is rarely applied in the testing of Mechanics. This paper presents a cantilever stress/strain gauge with an optical microring resonator. It is proposed the using of radius change of ring waveguide for the sensing element. When external stress is put on the structure, the radius of the SOI ring waveguide will be subjected to variation, which causes the optical resonant parameters to change. This ultimately leads to a red-shift of resonant spectrum, and shows the excellent characteristics of the structure's stress/strain sensitivity. Designed a bicyclic cascade embedded optical micro-cavity structure, which was prepared by employing MEMS lithography and ICP etching process. The characteristic of stress/strain sensitivity was calculated theoretically. Two values of 0.185 pm x kPa(-1) and 18.04 pm x microstrain(-1) were obtained experimentally, which also was verified by theoretical simulations. Comparing with the single-loop micro-cavity structure, its measuring range and stress sensitivity increased by nearly 50.3%, 10.6%, respectively. This paper provides a new method to develop micro-opto-electromechanical system (MOEMS) sensors.

摘要

在绝缘体上硅(SOI)上制备的光学微环谐振器具有高灵敏度、小尺寸和低模式体积。其高灵敏度已广泛应用于光信息传输和惯性导航设备领域,而在力学测试中应用较少。本文提出了一种带有光学微环谐振器的悬臂式应力/应变计。提出将环形波导的半径变化用作传感元件。当外部应力作用于该结构时,SOI环形波导的半径将发生变化,这会导致光学谐振参数改变。这最终导致谐振光谱红移,并显示出该结构优异的应力/应变灵敏度特性。设计了一种双环级联嵌入式光学微腔结构,采用MEMS光刻和ICP蚀刻工艺制备。从理论上计算了应力/应变灵敏度特性。实验获得了0.185 pm×kPa⁻¹和18.04 pm×με⁻¹两个值,理论模拟也对其进行了验证。与单环微腔结构相比,其测量范围和应力灵敏度分别提高了近50.3%、10.6%。本文为开发微光机电系统(MOEMS)传感器提供了一种新方法。

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