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Auxiliary glow discharge in the trigger unit of a hollow-cathode thyratron

机译:空心阴极晶闸管触发单元中的辅助辉光放电

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Results from studies of a low-current glow discharge with a hollow cathode are presented. A specific feature of the discharge conditions was that a highly emissive tablet containing cesium carbonate was placed in the cathode cavity. In the absence of a tablet, the discharge ignition voltage was typically aeyen3.5 kV, while the burning voltage was in the range of 500-600 V. The use of the tablet made it possible to decrease the ignition voltage to 280 V and maintain the discharge burning voltage at a level of about 130 V. A model of the current sustainment in a hollow-cathode discharge is proposed. Instead of the conventional secondary emission yield, the model uses a generalized emission yield that takes into account not only ion bombardment of the cathode, but also the emission current from an external source. The model is used to interpret the observed current-voltage characteristics. The results of calculations agree well with the experimental data. It is shown that, in some discharge modes, the external emission current from the cathode can reach 25% of the total discharge current.
机译:给出了对空心阴极低电流辉光放电的研究结果。放电条件的一个特定特征是将含有碳酸铯的高发射片剂放置在阴极腔中。在没有药片的情况下,放电点火电压通常为aeyen3.5 kV,而燃烧电压在500-600 V的范围内。使用药片可以将点火电压降低至280 V并保持放电燃烧电压约为130V。提出了空心阴极放电电流维持的模型。该模型使用常规的发射率代替常规的二次发射率,该广义的发射率不仅考虑了阴极的离子轰击,还考虑了来自外部源的发射电流。该模型用于解释观察到的电流-电压特性。计算结果与实验数据吻合良好。结果表明,在某些放电模式下,来自阴极的外部发射电流可以达到总放电电流的25%。

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