光子学报, 2012, 41 (6): 678, 网络出版: 2012-06-19
基于差频中红外激光的痕量气体高分辨光谱检测研究
Research on the High Resolution Trace Gas Detection Based on the Differencefrequency Midinfrared Spectrometer
激O734光光谱 中红外 差频 气体检测 Laser spectroscopy Midinfrared Differencefrequency generation (DFG) Gas sensing
摘要
研究了基于差频光源的高分辨中红外激光光谱检测系统,差频中红外光源使用两台近红外半导体激光器作为种子光源,采用PPLN晶体作为非线性混频器件,结合准相位匹配技术实现了3.2~3.7 μm中红外相干光源输出,最大差频输出功率约为1 μW.以CH4为例检验了系统的高分辨红外光谱检测特性,选择CH4分子3 028.751 cm-1 v3基频吸收线作为分析谱线,10 cm光程的检测限为0.8 ppm.光谱数据分析表明,系统检测限主要受到标准具光学噪音的限制.
Abstract
Midinfrared spectral region is favorable for high sensitivity trace gas detection. The development and characterization of a compact midinfrared laser spectrometer for high resolution spectroscopic detection of trace gases is reported. Continuouswave midinfrared radiation is generated by differencefrequency mixing of outputs of two commercial narrow linewidth diode lasers. A maximum midinfrared radiation power of 1 μW at 3.31 μm is generated, and the wavelength tuning region is around 3.2 μm to 3.7 μm. The highresolution spectroscopy capability of this spectrometer is evaluated by trace CH4 measurement, the line at 3 028.751 cm-1 of v3 fundamental vibrational band of CH4 is chosen as target analysis line for this line is relatively free of interference by other gas species. The detection sensitivity for CH4 is estimated to be 0.8 ppm for 10 cm optical path length at atmospheric pressure, and the limitation is supposed mainly from the etalon noise of optical surfaces.
陈东, 张伯昆, 胡燮, 刘文清, 张玉钧. 基于差频中红外激光的痕量气体高分辨光谱检测研究[J]. 光子学报, 2012, 41(6): 678. CHEN Dong, ZHANG Bokun, HU Xie, LIU Wenqing, ZHANG Yujun. Research on the High Resolution Trace Gas Detection Based on the Differencefrequency Midinfrared Spectrometer[J]. ACTA PHOTONICA SINICA, 2012, 41(6): 678.