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Breakdown Initiating Mechanisms at Electrode Interfaces in Liquids

机译:液体中电极界面的击穿引发机理

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摘要

Two hitherto neglected mechanisms, which occur at the interface between insulating liquids and metal electrodes under high electrical fields, are considered and shown to be significant for the initiation of breakdown. One involves the Lippmann effect in which the electrical fields of the double layers at the electrodes reduce the interfacial tension and lead to the generation of low-density microcavities on the electrode surfaces. The other is the Auger effect in which non-radiative recombination of electrons and positive holes across the large energy gap between these states leads to secondary electrons of high energy. The coupling between these two mechanisms is expected to be highly conducive to streamer initiation at the electrodes.
机译:迄今为止,在绝缘液体和金属电极之间的界面在高电场下发生的两种迄今为止被忽略的机制被认为是重要的,并且被证明对击穿的启动很重要。一种涉及李普曼效应,其中在电极处的双层的电场降低界面张力并导致在电极表面上产生低密度微腔。另一个是俄歇效应,其中电子和空穴在这些状态之间的大能隙之间的非辐射复合会产生高能的二次电子。预计这两种机制之间的耦合将非常有利于在电极处启动拖缆。

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