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Radar REMPI Diagnostic for Low Neutral Density Measurements of Xenon in Helium Buffer Gas: Experiments and Modeling

机译:雷达Rempi诊断氦缓冲气体中氙气低中性密度测量的诊断:实验和建模

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In order to accurately use Radar REMPI as a diagnostic technique, care must be taken to consider how to extrapolate the electron and neutral atom number densities from a given signal. We investigate the dependence of the Radar REMPI signal on the electron collision frequency, specifically in xenon-helium (Xe:He) mixtures, where helium is the buffer gas and the concentration of xenon is 10 ppm or less. We develop a 0-dimensional kinetic model with REMPI ionization to determine the effects of the collision frequency on the signal amplitude and determine a quantitative map between the signal obtained and the neutral xenon density. Good agreement is shown for 1 ppm xenon in atmospheric pressure (~760 Torr) helium, indicating the importance of modeling the plasma parameters to more accurately assess the signal. An upper bound for the cross-section of two-photon excitation from the ground 5p~(61)S_0 state to the 5p~56p[5/2]_2 state of xenon by circularly-polarized light is computed.
机译:为了准确使用雷达REMPI作为诊断技术,必须注意考虑如何从给定信号推断电子和中性原子数密度。我们研究了雷达REMPI信号对电子碰撞频率的依赖性,特别是在氙氦气(XE:HE)混合物中,其中氦气是缓冲气体,氙的浓度为10ppm或更小。我们开发了具有Rempi电离的0维动态模型,以确定碰撞频率对信号幅度的影响,并确定所获得的信号与中性氙密度之间的定量映射。良好的一致性在大气压(〜760托)氦气中显示1 ppm氙,表明模拟等离子体参数更准确地评估信号的重要性。通过圆偏振光计算从地面5P〜(61)S_0向5p〜56p [5/2] _2α2_2的横截面的横截面的横截面的上限。

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