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A Fourier Transform Spectrometer Based on an Electrothermal MEMS Mirror with Improved Linear Scan Range

机译:基于具有改进线性扫描范围的电热MEMS镜的傅立叶变换光谱仪

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摘要

A Fourier transform spectrometer (FTS) that incorporates a closed-loop controlled, electrothermally actuated microelectromechanical systems (MEMS) micromirror is proposed and experimentally verified. The scan range and the tilting angle of the mirror plate are the two critical parameters for MEMS-based FTS. In this work, the MEMS mirror with a footprint of 4.3 mm × 3.1 mm is based on a modified lateral-shift-free (LSF) bimorph actuator design with large piston and reduced tilting. Combined with a position-sensitive device (PSD) for tilt angle sensing, the feedback controlled MEMS mirror generates a 430 µm stable linear piston scan with the mirror plate tilting angle less than ±0.002°. The usable piston scan range is increased to 78% of the MEMS mirror’s full scan capability, and a spectral resolution of 0.55 nm at 531.9 nm wavelength, has been achieved. It is a significant improvement compared to the prior work.
机译:提出并结合了闭环控制的电热致动微机电系统(MEMS)微镜的傅立叶变换光谱仪(FTS)。扫描范围和镜板的倾斜角度是基于MEMS的FTS的两个关键参数。在这项工作中,占地为4.3 mm×3.1 mm的MEMS反射镜基于改进的无侧移(LSF)双压电晶片执行器设计,具有大活塞并减少了倾斜。结合用于倾斜角检测的位置敏感设备(PSD),反馈控制的MEMS反射镜可产生430 µm稳定的线性活塞扫描,且反射镜板的倾斜角小于±0.002°。可用的活塞扫描范围增加到MEMS反射镜全扫描能力的78%,并且在531.9 nm波长下实现了0.55 nm的光谱分辨率。与以前的工作相比,这是一个重大的改进。

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