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A Study of Radial Cataphoresis and Ion densities in High Power Density Hg-Ar Discharges

机译:高功率密度HG-AR放电中径向离散和离子密度的研究

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New types of fluorescent lamps, including both compact and electrodeless lamps, utilise Hg-rare gas discharges at much higher power densities than standard fluorescent lamps. Several plasma physics phenomena, which are relatively unimportant in the plasma of standard fluorescent lamps, become important in high power density Hg-rare gas discharges. Numerical models are playing an increasingly important role in the further development of fluorescent lamp [1-9]. Plasma models, which have been optimised under standard fluorescent lamp conditions, have not yielded agreement with experiments on high power density Hg-Ar discharges [10]. Radial cataphoresis, electron-ion scattering, ladder like ionization, and deviations from the fundamental spatial mode for both ambipolar diffusion and radiation transport are some of the plasma phenomena which become important at high power density.
机译:新型荧光灯,包括紧凑型和无电灯灯,利用HG稀有气体排放,比标准荧光灯更高的功率密度。几种等离子体物理现象,在标准荧光灯等离子体中相对不重要,在高功率密度Hg稀有气体排出中变得重要。数值模型在荧光灯的进一步发展中发挥着越来越重要的作用[1-9]。在标准荧光灯条件下已经优化的等离子体模型没有与高功率密度HG-AR放电的实验进行了一致[10]。径向上脱位,电子离子散射,梯形等离子化,以及与非辅助扩散和辐射传输的基本空间模式的偏差是一些在高功率密度下变得重要的等离子体现象。

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