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Demonstration of a two-photon, confocal laser-induced fluorescence technique for the detection of nitric oxide in atmospheric pressure flows and hydrocarbon-air flames

机译:演示了一种用于检测大气压流和碳氢化合物-空气火焰中一氧化氮的双光子共聚焦激光诱导荧光技术

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摘要

The detection and measurement of levels of nitric oxide (NO) is of importance in combustion science, environmental pollution and biology. Here we describe a two-photon laser-induced fluorescence scheme for the detection of NO in an atmosphericpressure flow and a hydrocarbon-air flame. Excitation from a simple, YAG-pumped, Coumarin 450 dye system near 452.6 nm was used to promote the two-photon NO (A{sup}2Σ{sup}+, v' = 0←X{sup}2Π, v" = 0) transition in the γ(0, 0) band. Subsequentfluorescence detection in the range 200-300 nm permitted almost total rejection of elastic and geometrical scattering of laser radiation for excellent signal-to-noise characteristics. The use of a confocal optical arrangement for single-point measurements of ppm-level NO concentrations permits applications offering only a single direction for optical access and has potential for further development using fibre-optical techniques.
机译:一氧化氮(NO)水平的检测和测量在燃烧科学,环境污染和生物学中很重要。在这里,我们描述了一种双光子激光诱导的荧光方案,用于检测大气压流和碳氢化合物空气火焰中的NO。来自简单的,YAG泵浦,Coumarin 450染料在452.6 nm附近的激发用于促进双光子NO(A {sup}2Σ{sup} +,v'= 0←X {sup}2Π,v“ = 0)在γ(0,0)波段跃迁,随后在200-300 nm范围内进行荧光检测,几乎完全消除了激光辐射的弹性和几何散射,从而获得了出色的信噪比特性。用于单点测量ppm级NO浓度的应用程序允许应用程序仅提供单一方向的光学访问,并且具有使用光纤技术进行进一步开发的潜力。

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