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首页> 外文期刊>Journal of Applied Physics >Detection of Electrode Vapor Between Plane Parallel Copper Electrodes Prior to Current Amplification and Breakdown in Vacuum
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Detection of Electrode Vapor Between Plane Parallel Copper Electrodes Prior to Current Amplification and Breakdown in Vacuum

机译:在电流放大和真空击穿之前检测平面平行铜电极之间的电极蒸气

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摘要

Simultaneous, time‐resolved measurements of current growth and resonance line absorption have been made for the time intervals 0.2 and 0.8 μsec, respectively, preceding breakdown between plane‐parallel copper electrodes in vacuum. These measurements have been carried out for an electrode separation of 0.1 cm and residual pressures in the low 10-9‐Torr range. The experimental data show that neutral copper vapor is present in the interelectrode volume before the current increases sufficiently to produce breakdown. It is found that the vapor is generated during times of the order of some microseconds prior to breakdown, and is highly localized to the region of the subsequent spark channel. Further, the vapor density decreases from cathode to anode along the path of the subsequent spark channel. The results are consistent with a model for vacuum breakdown proposed recently in which the transient production of vapor immediately prior to breakdown occurs by the evaporation of an anode macroparticle during its transit to the cathode; amplification of the prebreakdown current in this vapor then leads to breakdown. From the data obtained in the present experiment, it appears that breakdown occurs primarily while the macroparticle is located between mid‐gap and the cathode.
机译:在真空中平行于平面的铜电极击穿之前,分别以时间间隔0.2和0.8μsec对电流增长和谐振线吸收进行了时间分辨的测量。这些测量是针对0.1 cm的电极间距和10-9-Torr低范围内的残余压力进行的。实验数据表明,在电流充分增加以产生击穿之前,极间体积中存在中性铜蒸气。已经发现,蒸气在击穿之前的几微秒数量级的时间内产生,并且高度局部化在随后的火花通道的区域中。此外,蒸气密度沿着随后的火花通道的路径从阴极到阳极减小。该结果与最近提出的真空击穿模型一致,在该模型中,在即将击穿之前,由于阳极大颗粒在转移至阴极的过程中发生了蒸发,因此瞬间产生了蒸汽。然后,该蒸气中预击穿电流的放大会导致击穿。从本实验获得的数据看来,击穿主要发生在大颗粒位于中间间隙和阴极之间时。

著录项

  • 来源
    《Journal of Applied Physics》 |1970年第1期|共6页
  • 作者单位

    Westinghouse Research Laboratories, Pittsburgh, Pennsylvania 15235;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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