Miniaturization of a grating-based SPR type near-infrared spectrometer by using vibration of a MEMS cantilever

Masaaki Oshita, Hidetoshi Takahashi, T. Kan
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Abstract

This paper reports on a miniaturization method of near-infrared spectrometer based on a plasmonic near-infrared photodetector. The spectrometer has an n-typed Si cantilever with an Au diffraction grating for Surface Plasmon Resonance (SPR) generation. Mechanical vibration of the cantilever provides alternation of the angle of incidence of the light to be measured. Coupled to SPR, the light energy is transduced to photocurrent. Since the different incident angle corresponds to different SPR resonant wavelength, the electrical measurement data of photocurrent during the cantilever vibration provides the whole spectrum information of the incident light. In this time, we developed a spectrometer device and measured time varying series of photocurrent during the cantilever vibration. Waveforms of the series were clearly dependent on the incident wavelength, and coherent to the SPR theory.
利用MEMS悬臂梁振动实现基于光栅的SPR型近红外光谱仪小型化
本文报道了一种基于等离子体近红外光电探测器的近红外光谱仪小型化方法。该光谱仪具有n型硅悬臂梁和金衍射光栅,用于表面等离子体共振(SPR)的产生。悬臂的机械振动提供了要测量的光的入射角的交替。与SPR耦合后,光能被转换成光电流。由于不同的入射角对应不同的SPR谐振波长,因此悬臂振动过程中光电流的电测量数据提供了入射光的全光谱信息。本文研制了一种分光计装置,测量了悬臂梁振动过程中光电流的时变序列。该系列的波形明显依赖于入射波长,并与SPR理论相一致。
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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