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Radio signals from electron beams in terrestrial gamma ray flashes

机译:无线电信号从电子束在陆地伽马射线闪光

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摘要

We show that the rate of association between terrestrial gamma ray flashes (TGFs) observed by the Fermi gamma ray burst monitor and VLF discharges detected by the World Wide Lightning Location Network (WWLLN) depends strongly on the duration of the TGF, with the shortest TGFs having associated WWLLN events over 50% of the time, and the longest TGFs showing a less than 10% match rate. This correlation is stronger if one excludes the WWLLN discharges that are not simultaneous (within 200 μs) with the TGF. We infer that the simultaneous VLF discharges are from the relativistic electron avalanches that are responsible for the flash of gamma rays and the nonsimultaneous VLF discharges are from related intracloud lightning strokes. The distributions of far-field radiated VLF stroke energy measured by WWLLN for the simultaneous and nonsimultaneous discharges support the hypothesis of two discrete populations of VLF signals associated with TGFs, with the simultaneous discharges among the strongest measured by WWLLN.
机译:我们表明,之间的联系地面伽马射线闪光(tgf信号)观察到费米伽马射线爆发监视器和甚低频排放检测到万维网闪电位置(WWLLN)强烈地依赖于网络TGF持续时间,最短的啦超过50%的有相关WWLLN事件时间,最长的tgf信号显示不到10%的匹配率。一个并不排除了WWLLN排放同时与TGF(在200μs)。推断同时甚低频排放从相对论电子雪崩负责伽马射线闪光,从异时甚低频排放相关的云间的闪电中风。远场辐射甚低频中风的分布同时能源WWLLN衡量异时排放支持假说两种离散种群的甚低频信号tgf信号,同时WWLLN排放测量中最强的。

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