Concentration measurements of atomic nitrogen in an atmospheric-pressure RF plasma jet using a picosecond TALIF.

W. Khan, Pavel Dvorak, N. Bolouki, M. Mrkvičková
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Abstract

The absolute concentration and spatial distribution of ground-state atomic nitrogen (N) in an atmospheric pressure plasma jet were measured using the two-photon absorption laser-induced fluorescence (TALIF). The jet was ignited by radio frequency (RF) voltage in argon (or argon with nitrogen admixture) flowing through a silica tube. The spatially resolved measurements of atomic nitrogen concentration were realized in the effluent of the jet. In a pure argon plasma, the N concentration was increased with the distance from the silica tube and reached the maximum value (8*1014 cm-3) at the distance of 15 mm, and then sharply decreased at the end of the plume. On the contrary, plasma ignited in Ar with nitrogen admixture, the maximum N concentration was located directly at the end of the silica tube, where plasma starts to blow out into the ambient air. The highest N concentrations for 0.5 % and 2 % of N2 in the feed gas were 3*1015 cm-3 and 8*1015 cm-3, respectively.
使用皮秒 TALIF 测量大气压射频等离子体射流中的原子氮浓度。
利用双光子吸收激光诱导荧光(TALIF)测量了大气压等离子体射流中基态原子氮(N)的绝对浓度和空间分布。射流是由流经硅胶管的氩气(或掺有氮气的氩气)中的射频(RF)电压点燃的。原子氮浓度的空间分辨测量是在射流的流出物中实现的。在纯氩等离子体中,氮浓度随与硅胶管的距离增加而增加,在距离硅胶管 15 毫米处达到最大值(8*1014 cm-3),然后在羽流末端急剧下降。相反,在掺有氮气的氩气中点燃的等离子体,最大氮气浓度直接位于二氧化硅管的末端,等离子体从这里开始吹向环境空气。原料气体中 0.5% 和 2% 的 N2 的最高 N 浓度分别为 3*1015 cm-3 和 8*1015 cm-3。
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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