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Are microbubbles necessary for the breakdown of liquid water subjected to a submicrosecond pulse?

机译:经受亚微秒脉冲的液态水分解是否需要微泡?

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Electrical breakdown in homogeneous liquid water for an similar to100 ns voltage pulse is analyzed. It is shown that electron-impact ionization is not likely to be important and could only be operative for low-density situations or possibly under optical excitation. Simulation results also indicate that field ionization of liquid water can lead to a liquid breakdown provided the ionization energies were very low in the order of 2.3 eV. Under such conditions, an electric-field collapse at the anode and plasma propagation toward the cathode, with minimal physical charge transport, is predicted. However, the low, unphysical ionization energies necessary for matching the observed current and experimental breakdown delays of similar to70 ns precludes this mechanism. Also, an ionization within the liquid cannot explain the polarity dependence nor the stochastic-dendritic optical emission structures seen experimentally. It is argued here that electron-impact ionization within randomly located microbubbles is most likely to be responsible for the collective liquid breakdown behaviors. (C) 2004 American Institute of Physics.
机译:分析了均质液态水中类似100 ns电压脉冲的电击穿。结果表明,电子碰撞电离不太重要,只能在低密度情况下或可能在光激发下起作用。仿真结果还表明,如果电离能非常低,约为2.3 eV,则液态水的现场电离会导致液体击穿。在这样的条件下,可以预测在阳极发生电场塌陷并且等离子体向阴极的传播,同时物理电荷传输最少。但是,匹配观察到的电流和类似70 ns的实验击穿延迟所需的低非物理电离能排除了这种机理。同样,液体中的电离不能解释极性依赖性,也不能解释实验观察到的随机树突状光发射结构。这里争论的是,随机定位的微泡中的电子碰撞电离最有可能导致集体的液体分解行为。 (C)2004美国物理研究所。

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