首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Multi-Event Studies of Sudden Energetic Electron Enhancements in the Inner Magnetosphere and Its Association With Plasmapause Positions
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Multi-Event Studies of Sudden Energetic Electron Enhancements in the Inner Magnetosphere and Its Association With Plasmapause Positions

机译:突然的多事件的研究高能电子内磁层及其改进与等离子体层顶位置

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摘要

Sudden enhancements of energetic electrons (tens of keV to <500 keV) at low L-shells have been frequently observed by Van Allen Probes. It is, however, still unclear how deep these electrons can reach and what the responsible mechanisms are. Here we seek to determine the inner boundary of initial enhancements of these energetic electrons and its link with the plasmapause location to offer a new, insightful perspective on this topic. Previous statistical studies have revealed a remarkably consistent observation that initial enhancements of energetic electrons occur mostly at higher L-shell than the innermost plasmapause locations (L_(pp)), though a few outlier events were also identified. In this study, we examine the identified outlier events where electron enhancements were reported inside the plasmapause (either in situ L_(pp) or simulated innermost L_(pp)). More detailed investigation indicates that the appearance of enhancements inside the in situ L_(pp) is often associated with duskside observations where the "actual" initial enhancement likely occurs somewhere else, outside the innermost plasmapause location. We thereby urge caution when using the relationship between the observed enhancement locations and the in situ L_(pp) to infer the effect of electric fields on energetic electrons. In summary, our findings suggest that the innermost L_(pp) remains the innermost limit of the initial sudden enhancements of energetic electrons. Combining with phase space density analysis, our result implies the role of a large-scale electric field that leads to sudden electron enhancements and the erosion of the plasmasphere.
机译:突然增强的高能电子(10以低L-shells keV < 500 keV)经常观察到范艾伦辐射探测器。然而,还不清楚这些电子多深可以达到和负责的机制是什么是这样的。最初的增强这些精力充沛电子与等离子体层顶及其链接位置提供一个新的、有见地的观点关于这个主题。显示一个非常一致的观察到最初的增强的高能电子发生主要是在l层高于最里面的等离子体层顶位置(L_ (pp)),尽管一些例外事件也确定了。研究中,我们检查发现异常事件电子增强被报道在哪里等离子体层顶(原位L_ (pp)模拟的L_ (pp))。调查表明的外观增强在原位L_ (pp)通常是与duskside观测的地方“实际”最初的增强可能发生在其他地方,最内层的等离子体层顶之外的位置。观察到的提高之间的关系位置和原位L_ (pp)来推断电场对高能电子的影响。总之,我们的研究结果表明最深处的L_ (pp)仍然是最内层的极限最初的突然增强,精力充沛电子。分析,我们的结果暗示的作用大规模的电场导致突然电子增强的侵蚀等离子体层。

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