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使用具有阶梯镜结构的声光可调滤光器空间外差拉曼光谱仪进行拉曼测量。

Raman measurements using an acousto-optic tunable filter spatial heterodyne Raman spectrometer with an echelle-mirror structure.

作者信息

Li Fuguan, Yu Shuo, Li Xiaotian, Liu Jianli, Yu Guangdong, Song Nan, Sun Ci, Chu Qihang, Sun Yuqi, Ni Qiliang

出版信息

Opt Express. 2025 Feb 10;33(3):3713-3733. doi: 10.1364/OE.540128.

Abstract

This study presents an acousto-optic tunable filter technology-based echelle-mirror spatial heterodyne Raman spectrometer (AOTF-EMSHRS) that integrates echelle gratings with mirror spatial heterodyne detection. The instrument uses the grating's high resolution and the AOTF's rapid wavelength selection capability to optimize the optical path through a mirror design. This results in a high signal-to-noise ratio (SNR), high spectral resolution, and broad wavelength range measurements. After calibration, the theoretical resolution reached 1.53 cm, with a single-order spectral detection range of 1574.3 cm. The spectral detection range spans from 100 cm to 4397 cm. Experimentally, we detected and analyzed various organic and inorganic substances and solutions. We compared EMSHRS performances with and without the AOTF and found that the SNR of the AOTF-EMSHRS system has improved by at least twofold. Additionally, we measured solutions with different molar concentrations, various sulfate mixtures, and mixtures in transparent containers made from different materials, obtained comprehensive spectral information, and conducted detailed analyses. The AOTF-EMSHRS demonstrated excellent measurement performance during complex sample detection and analysis.

摘要

本研究提出了一种基于声光可调谐滤波器技术的阶梯光栅-反射镜空间外差拉曼光谱仪(AOTF-EMSHRS),该光谱仪将阶梯光栅与反射镜空间外差检测相结合。该仪器利用光栅的高分辨率和AOTF的快速波长选择能力,通过反射镜设计优化光路。这使得测量具有高信噪比(SNR)、高光谱分辨率和宽波长范围。校准后,理论分辨率达到1.53 cm,单级光谱检测范围为1574.3 cm。光谱检测范围为100 cm至4397 cm。通过实验,我们对各种有机和无机物质及溶液进行了检测和分析。我们比较了有AOTF和无AOTF时EMSHRS的性能,发现AOTF-EMSHRS系统的SNR提高了至少两倍。此外,我们测量了不同摩尔浓度的溶液、各种硫酸盐混合物以及不同材料制成的透明容器中的混合物,获得了全面的光谱信息并进行了详细分析。AOTF-EMSHRS在复杂样品检测和分析过程中表现出优异的测量性能。

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