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Vacuum breakdown on metal surfaces

机译:金属表面的真空击穿

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The unipolar arc model is described. Experimental proof that unipolar arcing represents a discharge form which easily leads to explosive plasma formation is provided. Using a laser-produced plasma, it has been demonstrated that unipolar arcs ignite and burn on a nanosecond time scale without any external electric field being applied. Similar unipolar arc craters have been observed on the cathode surface of a pulsed vacuum diode with an externally applied field of 0.5 MV/cm. The experimental results show that cathode spots are formed by unipolar arching. The localized buildup of plasma above an electron-emitting spot naturally leads to a pressure gradient and electric field distribution which drives the unipolar arc. The high current density of a unipolar arc provides explosive plasma formation.
机译:描述了单极电弧模型。提供了单极电弧代表容易导致爆炸性等离子体形成的放电形式的实验证明。使用激光产生的等离子体,已证明单极性电弧在纳秒级的时间内点燃并燃烧,而没有施加任何外部电场。在脉冲真空二极管的阴极表面上已观察到类似的单极弧坑,外部施加的电场为0.5 MV / cm。实验结果表明,阴极斑点是由单极拱形形成的。等离子体在电子发射点上方的局部堆积自然会导致压力梯度和电场分布,从而驱动单极电弧。单极电弧的高电流密度会形成爆炸性等离子体。

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