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Visual and Electrical Evidence Supporting a Two-Plasma Mechanism of Vacuum Breakdown Initiation

机译:视觉和电学证据支持真空破裂引发的两种等离子体机理

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摘要

The energy available during vacuum breakdown between copper electrodes at high vacuum was limited using resistors in series with the vacuum gap and arresting diodes. Surviving features observed with SEM in postmortem samples were tentatively correlated with electrical signals captured during breakdown using a Rogowski coil and a high-voltage probe. The visual and electrical evidence is consistent with the qualitative model of vacuum breakdown by unipolar arc formation by Schwirzke [1, 2]. The evidence paints a picture of two plasmas of different composition and scale being created during vacuum breakdown: an initial plasma made of degassed material from the metal surface, ignites a plasma made up of the electrode material.
机译:在高真空下铜电极之间的真空击穿过程中,可用与真空间隙和制动二极管串联的电阻器来限制可用的能量。暂态扫描电镜中观察到的幸存特征暂时与使用Rogowski线圈和高压探头在击穿过程中捕获的电信号相关。视觉和电气证据与Schwirzke [1,2]通过单极电弧形成进行真空击穿的定性模型一致。证据描绘了在真空击穿过程中产生的两种不同组成和规模的等离子体的图像:由来自金属表面的脱气材料制成的初始等离子体点燃了由电极材料组成的等离子体。

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  • 来源
    《Plasma Science, IEEE Transactions on》 |2012年第4期|p.1217-1222|共6页
  • 作者

    Castano C.H.;

  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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