Jin Liming, Wang Ce, Jin Li, Chen Wenqing, Xu Haodong, Cui Min, Li Mengwei
Appl Opt. 2022 Jun 20;61(18):5386-5391. doi: 10.1364/AO.457479.
In this paper, we present the design, fabrication, and test of a micro-opto-electro-mechanical systems (MOEMS) accelerometer based on the Talbot effect of double-layer diffraction gratings. The detection of acceleration is realized by using the highly sensitive displacement characteristic of Talbot imaging of near-field diffraction with double-layer gratings. For the purpose of obtaining optimal contrast of the optical interferometric detection, the parameters of the gratings are optimized by the finite-difference time-domain (FDTD) simulation. The experimental results indicate that this MOEMS accelerometer with the proposed design can achieve a resolution of 246 µg, sensitivity of 6.1 V/g, and bias stability of 0.02 mg. The proposed accelerometer can be operated at higher accelerations (∼80), which shows significant potential for being used in applications that require detection of strong and fast vibrations, especially in vibration sensing of vehicles and geophysical seismic sensing in real time.
在本文中,我们展示了一种基于双层衍射光栅塔尔博特效应的微光机电系统(MOEMS)加速度计的设计、制造和测试。利用双层光栅近场衍射塔尔博特成像的高灵敏度位移特性实现加速度检测。为了获得光学干涉检测的最佳对比度,通过时域有限差分(FDTD)模拟对光栅参数进行了优化。实验结果表明,这种采用所提设计的MOEMS加速度计可实现246 µg的分辨率、6.1 V/g的灵敏度和0.02 mg的偏置稳定性。所提加速度计可在较高加速度(约80)下工作,在需要检测强烈快速振动的应用中,尤其是车辆振动传感和地球物理地震实时传感方面显示出巨大的应用潜力。