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Observations of narrow bipolar events reveal how lightning is initiated in thunderstorms

机译:窄双极事件的观察揭示了雷暴中是如何引发闪电的

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摘要

A long-standing but fundamental question in lightning studies concerns how lightning is initiated inside storms, given the absence of physical conductors. The issue has revolved around the question of whether the discharges are initiated solely by conventional dielectric breakdown or involve relativistic runaway electron processes. Here we report observations of a relatively unknown type of discharge, called fast positive breakdown, that is the cause of high-power discharges known as narrow bipolar events. The breakdown is found to have a wide range of strengths and is the initiating event of numerous lightning discharges. It appears to be purely dielectric in nature and to consist of a system of positive streamers in a locally intense electric field region. It initiates negative breakdown at the starting location of the streamers, which leads to the ensuing flash. The observations show that many or possibly all lightning flashes are initiated by fast positive breakdown.
机译:在雷电研究中,一个长期存在但基本的问题涉及在没有物理导体的情况下如何在风暴中引发雷电。这个问题围绕着一个问题,即放电是仅由常规的介电击穿引发还是涉及相对论的失控电子过程。在这里,我们报告观察到一种相对未知的放电类型,称为快速正向击穿,这是导致高功率放电的原因,称为窄双极事件。发现击穿具有广泛的强度,并且是大量闪电放电的起始事件。它本质上似乎是纯介电的,由在局部强电场区域中的正流系统组成。它在拖缆的起始位置引发负击穿,从而导致随后的闪光。观察结果表明,许多闪电或所有闪电都是由快速正向击穿引起的。

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