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Control of the thermionic vacuum arc plasma

机译:热电子真空电弧等离子体的控制

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The aim of this paper is to investigate the properties of thermionic vacuum arc (TVA) plasma and to optimize the discharge parameters in order to obtain plasma with high energetic ions and high ionization degree. Using emissive probe technique, the spatial plasma potential distribution has been measured. Experimental results show that the spatial distribution of plasma potential strongly depends on operation parameters (arc current/voltage, filament temperature, relative position and geometry of the electrodes and anode material) and its value is directly related to the voltage arc drop. In order to evaluate the plasma ionization degree, we have analyzed the equivalent electric circuit of the discharge during arc operation. The total anode discharge current is the sum of thermoelectric current flowing from filament and the current flowing from anode to the vessel walls. The value of the current intensity, which flows to the vessel, is directly proportional with the arc voltage and it is a measure of the plasma ionization degree. The deposition rate is related to the power input and was estimated using a Quartz Crystal Microbalance.
机译:本文的目的是研究热电子真空电弧(TVA)等离子体的特性,并优化放电参数,以获得具有高能离子和高电离度的等离子体。使用发射探针技术,已经测量了空间等离子体电势分布。实验结果表明,等离子体电势的空间分布在很大程度上取决于运行参数(电弧电流/电压,灯丝温度,电极和阳极材料的相对位置和几何形状),并且其值与电弧压降直接相关。为了评估等离子体的电离度,我们分析了电弧操作过程中放电的等效电路。阳极总放电电流是从灯丝流出的热电流与从阳极流入容器壁的电流之和。流向容器的电流强度值与电弧电压成正比,是等离子体电离度的量度。沉积速率与功率输入有关,并使用石英晶体微量天平估算。

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    《》|2010年|p.391-394|共4页
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    Tiron V.; Popa G.;

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