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The Influence of the Magnetic Field on DC and the Impulse Breakdown of Noble Gases

机译:磁场对直流的影响和稀有气体的脉冲击穿

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摘要

Increased electromagnetic contamination of the environment accompanied with the amplified miniaturization of electronic components underline the issue of the reliable operation of electronics. Reliability is of utmost importance in special applications such as medical instruments, nuclear installations, fusion experiments, etc., where larger magnetic fields occur during operation. Therefore, the interest for insulation components that consistently protect instrumentation from overvoltage is growing. This paper deals with the effects important for the stability of a gas surge arrester, the most commonly used low-voltage component for the overvoltage protection. The effect of the magnetic field on DC and the impulse breakdown of noble gases is investigated. For the theoretical interpretation of the obtained results, the spectrum of free electron gas was determined, which enabled the evaluation of a new expression for the first Townsend coefficient. The results obtained in that way were verified through comparison with theoretically calculated results. Experiments were carried out under well-controlled laboratory conditions.
机译:随着环境的不断增加的电磁污染以及电子部件的日益小型化,这突出了电子设备可靠运行的问题。在特殊应用中,例如医疗仪器,核装置,聚变实验等,在操作过程中会产生较大磁场的情况下,可靠性至关重要。因此,对于能够始终保护仪器免受过压影响的绝缘组件的兴趣正在增长。本文讨论了对于气体浪涌放电器的稳定性重要的影响,该气体浪涌放电器是用于过电压保护的最常用的低压组件。研究了磁场对直流的影响以及稀有气体的脉冲击穿。为了对所得结果进行理论解释,确定了自由电子气的光谱,从而能够对第一个汤森系数进行新表达式的评估。通过与理论计算结果进行比较,可以验证以这种方式获得的结果。实验是在良好控制的实验室条件下进行的。

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