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Atomic oxygen TALIF measurements in an atmospheric-pressure microwave plasma jet with in situ xenon calibration

机译:大气压微波等离子体射流中原位氙校准的原子氧TALIF测量

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摘要

Two-photon absorption laser-induced fluorescence (TALIF) is used to measure the absolute density of atomic oxygen (O) in a coaxial microwave jet in ambient air at atmospheric pressure, operated with a mixture of He and a few per cent of air. The TALIF signal is calibrated using a gas mixture containing Xe. A novel method to perform calibration in situ, at atmospheric pressure, is introduced. The branching ratios of several Xe mixtures are reported, to enable us to perform the Xe calibration without the need for a vacuum vessel. The O densities are measured spatially resolved, and as a function of admixed air to the He, and microwave power. The electron density and temperatures are measured using Thomson scattering, and the N_2 and O_2 densities are measured using Raman scattering. O densities are found to have a maximum of (4–6) × 10~22 m~(?3), which indicate that O_2 is close to fully dissociated in the plasma. This is confirmed by the Raman scattering measurements. O is found to recombine mainly into species other than O_2 in the afterglow, which is suggested to consist of O_3 and oxidized components of NO.
机译:双光子吸收激光诱导的荧光(TALIF)用于测量大气压力下的同轴空气中同轴微波射流中原子氧(O)的绝对密度,该混合气体使用He和少量空气的混合物进行操作。使用包含Xe的气体混合物校准TALIF信号。介绍了一种在大气压下进行原位校准的新方法。报告了几种Xe混合物的支化比,使我们能够在不需要真空容器的情况下执行Xe校准。 O密度是在空间上解析的,并且是与He混合空气和微波功率的函数。使用汤姆森散射测量电子密度和温度,并且使用拉曼散射测量N_2和O_2密度。发现O密度最大为(4–6)×10〜22 m〜(?3),这表明O_2在血浆中接近完全解离。拉曼散射测量证实了这一点。发现O在余辉中主要重组为O_2以外的其他物种,这被认为由O_3和NO的氧化成分组成。

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