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Spatiotemporal behaviors of absolute density of atomic oxygen in a planar type of Ar/O_2 non-equilibrium atmospheric-pressure plasma jet

机译:平面型Ar / O_2非平衡大气压等离子体射流中原子氧绝对密度的时空行为

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摘要

A method combining of two-photon absorption laser-induced fluorescence and vacuum ultra-violet absorption spectroscopy is constructed and used to get the fine spatial distribution of O generated by a planar type of Ar/O_2 non-equilibrium atmospheric-pressure plasma jet. The O density in the quasi-uniform region, which occupies about 80% of the total plasma width, is as high as 10~(15) cm~(?3). The lifetime of O is estimated to be about 360 ± 60 μs. The loss of O atoms is due to the three-body reaction of O + O_2 + Ar → O_3 + Ar confirmed by a simple calculation with a few rate equations. The results are very useful for the simulation of Ar/O_2 plasmas, the design of large-scale planar plasma jets and the development of their potential applications.
机译:构造了一种将双光子吸收激光诱导的荧光与真空紫外吸收光谱相结合的方法,并用于获得平面型Ar / O_2非平衡大气压等离子体射流产生的O的精细空间分布。在准均匀区域中的O密度大约为总等离子体宽度的80%,其O密度高达10〜(15)cm〜(?3)。 O的寿命估计约为360±60μs。 O原子的损失归因于O + O_2 + Ar→O_3 + Ar的三体反应,该反应通过一些速率方程的简单计算得到了证实。该结果对于Ar / O_2等离子体的模拟,大规模平面等离子体射流的设计及其潜在应用的开发非常有用。

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