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Electron Flux Dropouts at L ∼ 4.2 From Global Positioning System Satellites: Occurrences, Magnitudes, and Main Driving Factors

机译:来自全球定位系统卫星L~4.2的电子通量下降:发生率,幅度和主要驱动因素

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摘要

Dropouts in electron fluxes at L ∼ 4.2 were investigated for a broad range of energies from 120 keV to 10 MeV, using 16 years of electron flux data from Combined X-ray Dosimeter on board Global Positioning System (GPS) satellites. Dropouts were defined as flux decreases by at least a factor 4 in 12 h, or 24 h during which a decrease by at least a factor of 1.5 must occur during each 12 h time bin. Such fast and strong dropouts were automatically identified from the GPS electron flux data and statistics of dropout magnitudes, and occurrences were compiled as a function of electron energy. Moreover, the Error Reduction Ratio analysis was employed to search for nonlinear relationships between electron flux dropouts and various solar wind and geomagnetic activity indices, in order to identify potential external causes of dropouts. At L ∼ 4.2, the main driving factor for the more numerous and stronger 1-10 MeV electron dropouts turns out to be the southward interplanetary magnetic field B s , suggesting an important effect from precipitation loss due to combined electromagnetic ion cyclotron and whistler mode waves in a significant fraction of these events, supplementing magnetopause shadowing and outward radial diffusion which are also effective at lower energies.
机译:使用来自全球定位系统(GPS)卫星上的组合X射线剂量计的16年电子通量数据,研究了从120 keV到10 MeV的宽范围能量在L〜4.2处电子通量的下降。漏失定义为通量在12小时或24小时内至少降低4倍,在此期间必须在每个12小时时间段内至少降低1.5倍。从GPS电子通量数据和跌落幅度的统计信息中,可以自动识别出这种快速而强烈的跌落,并且根据电子能量对出现的次数进行编译。此外,为了减少潜在的外在原因,采用了减少误差比分析来寻找电子通量下降与各种太阳风和地磁活动指数之间的非线性关系。在L〜4.2处,更多和更强的1-10 MeV电子落差的主要驱动因素被证明是向南的行星际磁场B s,这表明电磁离子回旋加速器和吹口哨模式波的组合引起的降水损失具有重要作用。在这些事件的很大一部分中,补充了对更年期的遮盖作用和向外的径向扩散,这在较低能量下也有效。

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