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首页> 外文期刊>Applied optics >RATE-EQUATION MODEL FOR QUANTITATIVE CONCENTRATION MEASUREMENTS IN FLAMES WITH PICOSECOND PUMP-PROBE ABSORPTION SPECTROSCOPY
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RATE-EQUATION MODEL FOR QUANTITATIVE CONCENTRATION MEASUREMENTS IN FLAMES WITH PICOSECOND PUMP-PROBE ABSORPTION SPECTROSCOPY

机译:皮秒级探针吸收光谱法测定火焰中浓度的速率方程模型

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摘要

Measurement of radical concentrations is important in understanding the chemical kinetics involved in combustion. Application of optical techniques allows for the nonintrusive determination of specific radical concentrations. One of the most challenging problems for investigators is to obtain flame data that are independent of the collisional environment. We seek to obviate this difficulty by the use of picosecond pump-probe absorption spectroscopy. A picosecond pump-probe absorption model is developed by rate-equation analysis. Implications are discussed for a laser-pulse width that is much smaller than the excited-state Lifetime of the absorbing atom or molecule. The possibility of quantitative, quenching-independent concentration measurements is discussed, and detection limits for atomic sodium and the hydroxyl radical are estimated. For a three-level absorber-emitter, the model leads to a novel pump-probe strategy, called dual-beam asynchronous optical sampling, that can be used to obtain both the electronic quenching-rate coefficient and the doublet mixing-rate coefficient during a single measurement. We discuss the successful demonstration of the technique in a companion paper [Appl. Opt. 34, XXX (1995)]. [References: 27]
机译:自由基浓度的测量对于理解燃烧所涉及的化学动力学很重要。光学技术的应用允许非侵入性地确定特定自由基的浓度。对于研究人员而言,最具挑战性的问题之一是获取独立于碰撞环境的火焰数据。我们寻求通过使用皮秒泵浦探针吸收光谱法来消除这一困难。通过速率方程分析建立了皮秒泵浦探针吸收模型。讨论了比吸收原子或分子的激发态寿命小得多的激光脉冲宽度的含义。讨论了定量的,与淬灭无关的浓度测量方法的可能性,并估计了原子钠和羟基自由基的检出限。对于三级吸收器-发射极,该模型导致了一种新颖的泵浦探测策略,称为双光束异步光学采样,该策略可用于同时获得电子猝灭率系数和双峰混合率系数。单次测量。我们在随附的论文中讨论了该技术的成功演示[Appl。选择。 34,XXX(1995)]。 [参考:27]

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