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High-resolution mid-IR spectrometer based on frequency upconversion

机译:基于频率上变频的高分辨率中红外光谱仪

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摘要

We demonstrate a novel approach for high-resolution spectroscopy based on frequency upconversion and postfiltering by means of a scanning Fabry-Perot interferometer. The system is based on sum-frequency mixing, shifting the spectral content from the mid-infrared to the near-visible region allowing for direct detection with a silicon-based CCD camera. This approach allows for low noise detection even without cooling of the detector. A setup is realized for the 3 μm regime with a spectral resolution of 0.2 nm using lithium niobate as the nonlinear material and mixing with a single-frequency 1064 nm laser. We investigate water vapor emission lines from a butane burner and compare the measured results to model data. The presented method we suggest to be used for real-time monitoring of specific gas lines and reference signals.
机译:我们展示了一种基于扫描法布里-珀罗干涉仪的基于频率上变频和后置滤波的高分辨率光谱的新方法。该系统基于和频混合,将光谱内容从中红外移动到近可见区域,从而可以使用基于硅的CCD摄像机直接检测。即使没有冷却检测器,该方法也允许低噪声检测。使用铌酸锂作为非线性材料并与单频1064 nm激光混合,可实现3μm范围的设置,光谱分辨率为0.2 nm。我们研究了丁烷燃烧器的水蒸气排放管线,并将测量结果与模型数据进行了比较。我们建议将提出的方法用于特定气体管线和参考信号的实时监控。

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