Degenerate Four-Wave Mixing in a Methane/Air Flame Using a Regeneratively Mode-Locked Ti:Sapphire Laser

M. Linne, G. Fiechtner
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Abstract

The potential of resonant Degenerate Four-Wave Mixing (DFWM) for measurements of major and minor species concentrations and temperature in reacting flows has been established by several groups1. Spatial resolution has been demonstrated, as has two-dimensional planar imaging. Perhaps most significantly, large signals have been observed at moderately high pressures (1100 Torr)2, establishing the potential for measurements inside practical combustion systems. As a result, a good deal of research is currently devoted to understanding the fundamental physical aspects of the technique.
利用再生锁模钛蓝宝石激光器在甲烷/空气火焰中的简并四波混频
共振简并四波混频(DFWM)测量反应流中主要和次要物质浓度和温度的潜力已经由几个小组建立。空间分辨率已被证明,因为有二维平面成像。也许最重要的是,在中等高压(1100托)下观测到了大的信号,这为在实际燃烧系统中进行测量奠定了基础。因此,目前有大量的研究致力于了解该技术的基本物理方面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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