首页> 外文会议>Geoscience and Remote Sensing, 1997. IGARSS '97. Remote Sensing - A Scientific Vision for Sustainable Development., 1997 IEEE International >Developmental studies for remote and in-situ detection of halogenated compounds by laser-induced photofragmentation/fragment detection spectrometry
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Developmental studies for remote and in-situ detection of halogenated compounds by laser-induced photofragmentation/fragment detection spectrometry

机译:激光诱导的光碎/碎片检测光谱法远程和原位检测卤代化合物的开发研究

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The analytical capabilities of a one-color, laser-induced photofragmentation/fragment detection technique for the remote and in situ detection of halogenated compounds is reported. For brominated compounds, 260.634-nm laser radiation is used to fragment the target compound and also excite the characteristic Br atom photofragment by means of its two-photon 4p/sup 4/5p /sup 4/D/sub 3/2//sup 0//spl larr/4p/sup 5/ /sup 2/P/sub 3/2//sup 0/ transition, whose absorption cross section is estimated to be 3.8/spl times/10/sup -43/ m/sup 4/. Detection is accomplished by (2+1) resonance-enhanced multiphoton ionization, as well as, laser-induced fluorescence and stimulated emission from the 4p/sup 4/5p /sup 4/D/sub 3/2//sup 0//spl rarr/4p/sup 4/5s/sup 4/ P/sub 5/2.3/2/ transitions at 844 and 751 nm, respectively. The SE signal is distinct from the LIF signal in that it is coherent, bidirectional, and propagates coaxially with the laser beam. It is also approximately two orders of magnitude greater than the LIF signal at 844 nm because of photophysical amplification. The technique has been demonstrated for CH/sub 3/Br, CHClBr/sub 2/, and CHBr/sub 3/ at total gas pressures of 1-760 Torr with detection limits in the parts-per-billion.
机译:报道了一种用于远程和原位检测卤代化合物的单色激光诱导的光碎裂/碎片检测技术的分析能力。对于溴化化合物,使用260.634-nm激光辐射使目标化合物破碎,并通过其双光子4p / sup 4 / 5p / sup 4 / D / sub 3/2 // sup激发特征性Br原子光碎裂。 0 // spl larr / 4p / sup 5 / / sup 2 / P / sub 3/2 // sup 0 /跃迁,其吸收截面估计为3.8 / spl乘以10 / sup -43 / m / sup 4 /。通过(2 + 1)共振增强多光子电离以及激光诱导的荧光和4p / sup 4 / 5p / sup 4 / D / sub 3/2 // sup 0 //的激发发射来完成检测spl rarr / 4p / sup 4 / 5s / sup 4 / P / sub 5 / 2.3 / 2 /分别在844和751 nm处跃迁。 SE信号与LIF信号不同,因为它是相干,双向的,并且与激光束同轴传播。由于光物理放大,它也比844 nm处的LIF信号大大约两个数量级。已经证明该技术适用于CH / sub 3 / Br,CHClBr / sub 2 /和CHBr / sub 3 /,总气压为1-760 Torr,检测极限为十亿分之几。

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