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Effect of the electron drift in a transverse electric field on the width of spark channels in a multichannel sliding discharge

机译:横向电场中电子的漂移对多通道滑动放电中火花通道宽度的影响

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摘要

The effect of electron drift on the transverse size of the spark channels in a multichannel sliding discharge on a dielectric surface is considered in a semianalytic approximation. The strength of an electric field transverse to the channel axis is estimated by the mirror image method. The estimate obtained is used to analyze the differential equation for the density of electrons with allowance for their drift from the channel into the surrounding layers. It is shown that the channel expands to a certain steady-state radius at which an increase in the local electron density due to the ionization of atoms is balanced by its decrease due to the electron drift from the surface channel layer into the surrounding layers. Numerical estimates are carried out for the conditions of earlier experiments with discharges in He, Ne, Ar, and Xe. The analysis applies to the initial nanosecond stage of the spark development, when the hydrodynamic expansion of the channels is still insignificant.
机译:在半解析近似中考虑了电子漂移对电介质表面上多通道滑动放电中火花通道横向尺寸的影响。横向于通道轴的电场强度通过镜像法来估计。获得的估计值用于分析电子密度的微分方程,并考虑到电子从沟道到周围层的漂移。可以看出,沟道扩展到一定的稳态半径,在该半径下,由于原子的电离而引起的局部电子密度的增加,由于电子从表面沟道层向周围层的漂移而导致的减小而得以平衡。对于较早的实验条件(氦,氖,氩和氙中的放电)进行了数值估算。该分析适用于火花发展的初始纳秒级,此时通道的流体动力膨胀仍然不明显。

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