Ionization layer with collision-free atoms at the edge of partially to fully ionized plasmas

M. Benilov
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Abstract

When a hot arc spot has just formed on the cathode surface, e.g., in the course of arc ignition on a cold cathode, a significant part of the current still flows in the glow-discharge mode to the cold surface outside the spot. The near-cathode voltage continues to be high at all points of the cathode surface. The mean free path for collisions between the atoms and the ions within the plasma ball near the spot is comparable to, or exceeds, the thickness of the ionization layer, which is a part of the near-cathode non-equilibrium layer where the ion current to the cathode is generated. The evaluation of the ion current to the cathode surface under such conditions is revisited. A fluid description of the ion motion in the ionization layer is combined with a kinetic description of the atom motion. The resulting problem admits a simple analytical solution. Formulas for the evaluation of the ion current to the cathode for a wide range of conditions are derived and the possibilities of using these formulas to improve the accuracy of existing methods for modeling high-pressure arc discharges in relation to glow-to-arc transitions are discussed.
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部分电离到完全电离等离子体边缘的无碰撞原子电离层
当阴极表面刚刚形成热弧光点时,例如在冷阴极上点燃电弧的过程中,大部分电流仍以辉光放电模式流向光点外的冷表面。阴极表面各点的近阴极电压仍然很高。原子和离子在光斑附近等离子体球内碰撞的平均自由路径与电离层的厚度相当,甚至超过了电离层的厚度,而电离层是近阴极非平衡层的一部分,离子电流就是在此产生的。本文重新探讨了在这种条件下阴极表面离子电流的评估。电离层中离子运动的流体描述与原子运动的动力学描述相结合。由此产生的问题可以用简单的分析方法解决。得出了在各种条件下阴极离子电流的评估公式,并讨论了使用这些公式来提高现有高压电弧放电建模方法在辉光到电弧转换方面的准确性的可能性。
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