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首页> 外文期刊>Оптика и спектроскопия >COMBINED OPTICAL DISPERSION BY PRISM AND ARRAYED WAVEGUIDE GRATING WITH MULTIPLE DIFFRACTION ORDERS FOR RAMAN SPECTROMETER
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COMBINED OPTICAL DISPERSION BY PRISM AND ARRAYED WAVEGUIDE GRATING WITH MULTIPLE DIFFRACTION ORDERS FOR RAMAN SPECTROMETER

机译:棱镜的光学色散和带多重衍射级的光栅光栅光栅的拉曼光谱仪

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摘要

A compact dispersive device for Raman spectrometer was proposed to achieve a spectrum resolution below 0.55 nm in the spectral range of 800 to 1000 nm. A 41-channel arrayed waveguide grating (AWG) with eleven different diffraction orders was designed, and each output channel of this AWG contained eleven light signals with periodically 20 nm spaced wavelength. These signals were further cross-dispersed by a prism, and finally form a 41 × 11 spots array on a CCD. The detailed theoretical analysis and simulation of this dispersive device were introduced in this paper. Compared with commercial dispersive modules composed of grating, lens and mirrors, the proposed structure is able to provide a compact device with higher spectrum resolution, which is attractive for handheld Raman spectrometer.
机译:提出了一种用于拉曼光谱仪的紧凑型分散装置,以在800至1000 nm的光谱范围内实现低于0.55 nm的光谱分辨率。设计了一个具有11个不同衍射级的41通道阵列波导光栅(AWG),该AWG的每个输出通道均包含11个周期间隔为20 nm的光信号。这些信号通过棱镜进一步交叉分散,最终在CCD上形成41×11点阵列。本文介绍了该分散装置的详细理论分析和仿真。与由光栅,透镜和反射镜组成的商用色散模块相比,该结构能够提供一种具有更高光谱分辨率的紧凑型设备,这对手持式拉曼光谱仪具有吸引力。

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