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Triggering and guiding of an upward positive leader from a ground rod with an ultrashort laser pulse. II. Modeling

机译:用超短激光脉冲从接地棒触发和引导向上的正极引线。二。造型

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We have used the Bondio-Gallimberti model of positive leader propagation to simulate laboratory experiments of laser triggering and guiding of upward leaders initiated from a ground rod. The model proves to be capable of reproducing all the important features of laser-guided leader propagation that have been observed experimentally. The leader guiding effect of the laser-created plasma channel is taken into account in the model by adjusting the value of the charge per unit length of the leader, which has been measured in the laboratory to be lower for a laser-guided leader than for an ordinary one. The charge per unit length of the leader is related in the model to the critical temperature at which the air in the transition region at the leader tip must be heated to be conductive enough to become a new leader portion. For an ordinary leader, this critical temperature is 1500 K, at which the electrons all detach from the negative ions in the leader corona, increasing the air conductivity. We give the interpretation that in the case of the laser-guided leaders, because of the relatively high density of negative ions per unit length in the laser-ionized channel, the right conditions of conductivity can be met in the transition region without the electrons being all detached from the ions, allowing a reduction of the critical temperature and of the charge per unit length.
机译:我们已经使用正面引子传播的Bondio-Gallimberti模型来模拟激光触发和引导从接地棒引发的向上引子的实验室实验。该模型被证明能够重现已通过实验观察到的激光引导前导传播的所有重要特征。在模型中,通过调整引导器每单位长度的电荷值,可以将激光产生的等离子通道的引导器引导效果考虑在内,在实验室中,该值对于激光引导的引导器而言要小于一个普通的。引线每单位长度的电荷在模型中与临界温度相关,在该临界温度下,引线前端过渡区域中的空气必须加热到足以导电的程度才能成为新的引线部分。对于普通的引导器,此临界温度为1500 K,在该温度下,电子都从引导器电晕中的负离子脱离,从而增加了空气的传导性。我们给出的解释是,在激光引导的引线的情况下,由于激光电离通道中每单位长度的负离子密度相对较高,因此在过渡区域中可以满足正确的电导率条件,而无需电子所有离子均脱离离子,从而降低了临界温度并降低了单位长度的电荷。

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