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A Revised Look at Relativistic Electrons in the Earth's Inner Radiation Zone and Slot Region

机译:修订后的地球内部辐射区和槽区域中的相对论电子

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摘要

We describe a new, more accurate procedure for estimating and removing inner zone background contamination from Van Allen Probes Magnetic Electron Ion Spectrometer (MagEIS) radiation belt measurements. This new procedure is based on the underlying assumption that the primary source of background contamination in the electron measurements at L shells less than three, energetic inner belt protons, is relatively stable. Since a magnetic spectrometer can readily distinguish between foreground electrons and background signals, we are able to exploit the proton stability to construct a model of the background contamination in each MagEIS detector by only considering times when the measurements are known to be background dominated. We demonstrate, for relativistic electron measurements in the inner zone, that the new technique is a significant improvement upon the routine background corrections that are used in the standard MagEIS data processing, which can “overcorrect” and therefore remove real (but small) electron fluxes. As an example, we show that the previously reported 1-MeV injection into the inner zone that occurred in June of 2015 was distributed more broadly in L and persisted in the inner zone longer than suggested by previous estimates. Such differences can have important implications for both scientific studies and spacecraft engineering applications that make use of MagEIS electron data in the inner zone at relativistic energies.We compare these new results with prior work and present more recent observations that also show a 1-MeV electron injection into the inner zone following the September 2017 interplanetary shock passage.
机译:我们描述了一种新的更准确的程序,用于估计和移除Van Allen探针磁性离子光谱仪(Mageis)辐射带测量的内部区域背景污染。这种新程序基于潜在的假设,即L壳在少于三个,能量内带质子的L壳中的电子测量中的主要污染源相对稳定。由于磁光谱仪可以容易地区分前景电子和背景信号,因此我们能够利用质子稳定性来在每个Mageis检测器中构建背景污染的模型,仅通过考虑测量是背景为主导的。我们证明了内部区域中的相对论电子测量,新技术是在标准Mageis数据处理中使用的例行背景校正的显着改进,该数据处理可以“过度纠正”,因此删除真实(但小)电子磁通量。例如,我们认为先前报道的1-MeV注射到2015年6月发生的内部区域的内部区域在L中更广泛地分布,并且在内部区持续超过以前估计的建议。这种差异可以对科学研究和航天器工程应用具有重要意义,这些应用程序在相对论的能量下利用内部区域中的Mageis电子数据。我们将这些新结果与现有的工作进行比较,并提出更新的观察结果,也显示了一个1-MeV电子的观察结果2017年9月截止行动冲击通道后注射到内部区。

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  • 作者单位

    Space Sciences Department The Aerospace Corporation El Segundo CA USA;

    Space Sciences Department The Aerospace Corporation El Segundo CA USA;

    Space Sciences Department The Aerospace Corporation El Segundo CA USA;

    Space Sciences Department The Aerospace Corporation El Segundo CA USA;

    Space Sciences Department The Aerospace Corporation El Segundo CA USA;

    Space Sciences Department The Aerospace Corporation El Segundo CA USA;

    Institute for the Study of Earth Oceans and Space University of New Hampshire Durham NH USA;

    Space Sciences Department The Aerospace Corporation El Segundo CA USA;

    Space Sciences Department The Aerospace Corporation El Segundo CA USA;

    Space and Atmospheric Sciences Group Los Alamos National Laboratory Los Alamos NM USA;

    Institute for the Study of Earth Oceans and Space University of New Hampshire Durham NH USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 空间物理;
  • 关键词

    accurate; Revised; Look;

    机译:准确;修改;看;

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