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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >The VLF fingerprint of elves: Step-like and long-recovery early VLF perturbations caused by powerful ±CG lightning EM pulses
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The VLF fingerprint of elves: Step-like and long-recovery early VLF perturbations caused by powerful ±CG lightning EM pulses

机译:精灵的甚低频指纹状长的康复早期甚低频扰动所致强大的±CG闪电电磁脉冲

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[1] Subionospheric VLF recordings are investigated in relation with intense cloud-to-ground (CG) lightning data. Lightning impacts the lower ionosphere via heating and ionization changes which produce VLF signal perturbations known as early VLF events. Typically, early events recover in about 100 s, but a small subclass does not recover for many minutes, known as long-recovery early events (LORE). In this study, we identify LORE as a distinct category of early VLF events, whose signature may occur either on its own or alongside the short-lived typical early VLF event. Since LORE onsets coincide with powerful lightning strokes of either polarity (±), we infer that they are due to long-lasting ionization changes in the uppermost D region ionosphere caused by electromagnetic pulses emitted by strong ±CG lightning peak currents of typically>250 kA, which are also known to generate elves. The LORE perturbations are detected when the discharge is located within ~250 kmfromthe great circle path of a VLF transmitter-receiver link. The probability of occurrence increases with stroke intensity and approaches unity for discharges with peak currents ≥ ~300 kA. LOREs are nighttime phenomena that occur preferentially, at least in the present regional data set, during winter when strong ±CG discharges are more frequent and intense. The evidence suggests LORE as a distinct signature representing the VLF fingerprint of elves, a fact which, although was predicted by theory, it escaped identification in the long-going VLF research of lightning effects in the lower ionosphere.
机译:[1] Subionospheric甚低频录音了在与激烈地(CG)闪电数据。通过加热和电离电离层的变化产生甚低频信号扰动称为早期的甚低频事件。在100年代,但一个小子类不恢复许多分钟,称为缓慢恢复早期的事件(知识)。知识作为一种独特的一类早期甚低频事件,谁的签名可能发生的或在短暂的甚低频早期典型事件。闪电中风的极性(±),我们推断它们是由于长期的电离的D的变化区域电离层由电磁脉冲造成的发出强烈的±CG闪电的峰值电流通常> 250 kA,也知道生成精灵。发现位于放电时~ 250 kmfromthe甚低频大圆路径收发两用机链接。发生与中风的强度和增加的方法统一的排放峰值电流≥~ 300 kA。发生优先,至少在目前区域的数据集,在冬天的时候强±CG排放更频繁和激烈。签名代表的甚低频指纹精灵,一个事实,尽管被预测的理论,它逃脱了识别long-going甚低频研究闪电的效果较低的电离层。

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