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Sprite streamer initiation from natural mesospheric structures

机译:天然中层结构引发的精灵流光

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摘要

Sprites are large, luminous electrical discharges in the upper atmosphere caused by intense cloud-to-ground lightning flashes, manifesting an impulsive coupling mechanism between lower and upper atmospheric regions. Their dynamics are governed by filamentary streamer discharges whose propagation properties have been well studied by past work. However, how they are initiated is still under active debate. It has recently been concluded that ionospheric/mesospheric inhomogeneities are required for their initiation, but it is an open question as to what the sources of those inhomogeneities are. Here we present numerical simulation results to demonstrate that naturally-existing, small-scale mesospheric structures such as those created by gravity waves via instability and breaking are viable sources. The proposed theory is supported by a recent, unique high-speed observation from aircraft flying at 14-km altitude. The theory naturally explains many aspects of observed sprite streamer initiation and has important implications for future observational work.
机译:精灵是由强烈的云对地闪电引起的高层大气中的大型发光放电,这表明较低和较高大气区域之间存在脉冲耦合机制。它们的动力学受长丝流光放电的控制,其过去的工作已经对其传播特性进行了很好的研究。但是,如何启动它们仍在积极辩论中。最近已经得出结论,电离层/中层非均匀性是引发它们的必要条件,但是关于这些非均匀性的来源是一个悬而未决的问题。在这里,我们提供数值模拟结果,以证明自然存在的小尺度中层结构,例如由重力波通过不稳定性和破坏产生的结构,是可行的来源。最近从14公里高空飞行的飞机进行的独特的高速观测结果为所提出的理论提供了支持。该理论自然地解释了观测到的精灵流光启动的许多方面,并对未来的观测工作具有重要意义。

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