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Multicomponent Gas Analysis With First-Overtone CO Laser

机译:首次泛光CO激光进行多组分气体分析

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摘要

The quantitative analysis of sensitivity and selectivity characteristics for spectroscopic gas detection with different mid-in frared molecular lasers was carried out. In particular, the partial and cross sensitivity, the partial selectivity and total parameter of selectivity and sensitivity for gas detection in gas mixture of seven components with HF, DF and first-overtone (FO) carbon monoxide lasers were calculated. The analysis demonstrated that FO CO laser due to its spectral properties is very perspective source of light for laser spectroscopy of multicomponent gas mixtures. The FO CO laser spectral range (2.5-4.2 microns) overlaps the "transparency window" of the atmosphere in the wavelength range (~3 -4 microns) and covers that of HF and DF lasers, with its ro-vibrational line spacing being several times less than that of those lasers. The FO CO laser spectral lines coincide with a large number of absorption lines belonging to numerous organic and non-organic substances which can be found in plasma induced by laser ablation. The linear and nonlinear absorption of the FO CO laser by different gaseous substances was calculated and compared with the experimental data.
机译:定量分析了中红外分子激光器在光谱气体检测中的灵敏度和选择性特征。特别是,计算了七种成分的HF,DF和第一泛音(FO)一氧化碳激光气体混合物中气体检测的部分和交叉灵敏度,部分选择性以及选择性和灵敏度的总参数。分析表明,FO CO激光器由于其光谱特性而成为多组分气体混合物的激光光谱学的非常透视的光源。 FO CO激光器的光谱范围(2.5-4.2微米)在波长范围(约3-4微米)内与大气的“透明度窗口”重叠,并覆盖了HF和DF激光器的波长范围,其旋转振动线间距为数倍。比那些激光器少一倍。 FO CO激光光谱线与属于许多有机和非有机物质的大量吸收线重合,这些吸收线可以在激光烧蚀诱导的等离子体中找到。计算了不同气态物质对FO CO激光器的线性和非线性吸收,并与实验数据进行了比较。

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