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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >On the association of early/fast very low frequency perturbations with sprites and rare examples of VLF backscatter
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On the association of early/fast very low frequency perturbations with sprites and rare examples of VLF backscatter

机译:早期的协会/速度很低频率扰动与精灵和罕见的甚低频后向散射的例子

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Very low frequency (VLF) data recorded in the midwestern United States are compared with sprite observations on three different dates of high sprite activity between 1995 and 2000. Sprites are frequently seen to be correlated with “early/fast” events: perturbations of the amplitude and/or phase of a VLF transmitter signal propagating through the storm region. Unlike recent observations of Haldoupis et al. (2004), where a one-to-one relationship between forward scatter events and sprites was reported, only ~48% of sprites in our cases are accompanied by VLF perturbations, or, viewed conversely, ~61% of VLF perturbations are accompanied by sprites. The difference between the two data sets might be due to the relative location of the causative lightning along the VLF signal path (i.e., near transmitter or near receiver) in that mode coupling of the propagating VLF signal causes some perturbations to be undetectable at long distances from the disturbed region. In addition, there are quite a few cases of early/fast perturbations not accompanied by sprites, although not nearly the preponderance previously expected. In rare cases, observed VLF signal perturbations can only be explained by VLF backscatter from the sprite body because of the geometrical constraints that preclude other mechanisms, including forward scattering from elves or halos. However, such backscatter events are extremely rare and are found to occur only for the largest sprites in terms of their horizontal extent.
机译:非常低的频率(甚低频)中记录的数据美国中西部,而雪碧观察三种不同日期的高雪碧活动在1995年到2000年之间。经常看到相关“早期/快”事件:扰动甚低频发射机的振幅或相位信号传播通过暴风雨地区。与最近的观察Haldoupis et al。(2004),一对一的关系据报道,向前散射事件和精灵只有~ 48%的病例有精灵甚低频扰动,或者,相反,~ 61%甚低频扰动都伴随着精灵。两个数据集之间的差异由于致病的相对位置闪电在甚低频信号路径(例如,近了发射机或接收机附近)的模式耦合传播甚低频信号的原因在长一些扰动探测不到距离干扰区域。有相当多的情况下,早期的/快扰动不伴随着精灵,虽然不是近的优势预期。扰动只能用甚低频来解释后向散射的精灵的身体的排除其他几何约束机制,包括向前散射精灵或晕。极其罕见,只发现发生吗最大的精灵的水平的程度。

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