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Single-Pixel MEMS Spectrometer Based on Compressive Sensing

机译:基于压缩感测的单像素MEMS光谱仪

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This letter demonstrates a miniature spectrometer suitable for transmission spectroscopy. A MEMS oscillating mask is designed to encode the light distribution dispersed along a slit. A single-pixel photodetector is employed to collect the encoded light, and thus the proposed principle is workable for any wavelength range. Compressive sensing theory is used to design the encoding patterns implemented on the MEMS encoder to release the requirement for long travel range of MEMS actuators and to improve the spectral resolution. The experimental results prove that the proposed spectrometer works efficiently to recover typical transmission spectra with a real spectral resolution of 2 nm from 446 nm to 652 nm. This resolution can be furtherly enhanced, and this technology can be used to establish portable spectrometers for chemical sensing applications.
机译:这封信演示了一种适用于透射光谱的微型光谱仪。 MEMS振荡掩模被设计成编码沿狭缝分散的光分布。采用单像素光电探测器来收集编码光,因此所提出的原理是可用于任何波长范围的原理。压缩检测理论用于设计在MEMS编码器上实现的编码模式,以释放MEMS致动器的长行驶范围并提高光谱分辨率。实验结果证明,所提出的光谱仪有效地工作以从446nm至652nm的真实光谱分辨率的典型透射光谱。该分辨率可以进一步提高,并且该技术可用于建立用于化学传感应用的便携式光谱仪。

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