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Theoretical Characterization of an Atmospheric Pressure Glow Discharge Used for Analytical Spectrometry

机译:用于分析光谱的大气压辉光放电的理论表征

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We have investigated the plasma processes in an atmospheric pressure glow discharge (APGD) in He used for analytical spectrometry by means of fluid and Monte Carlo (MC) simulations. Typical results include the potential and electric field distributions in the plasma, the density profiles of the various plasma species throughout the discharge, the mean electron energy, as well as the rates of the various collision processes in the plasma, and the relative importance of the different production and loss rates for the various species. The similarities and differences with low-pressure glow discharges are discussed. The main differences are a very small cathode dark space region and a large positive column as well as the dominant role of molecular ions. Some characteristic features of the APGD, such as the occurrence of the different spatial zones in the discharge, are illustrated, with links to experimental observations.
机译:我们已经通过流体和蒙特卡洛(MC)模拟研究了常压辉光放电(APGD)中的等离子过程,并将其用于分析光谱中的He。典型结果包括等离子体中的电势和电场分布,整个放电过程中各种等离子体物质的密度分布,平均电子能量以及等离子体中各种碰撞过程的速率,以及等离子体的相对重要性。不同物种的生产和损失率不同。讨论了低压辉光放电的异同。主要区别是非常小的阴极暗区和大的正柱以及分子离子的主导作用。举例说明了APGD的一些特征,如放电中不同空间区域的出现,并与实验观察结果相联系。

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