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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Two Wide-Angle Imaging Neutral-Atom Spectrometers and Interstellar Boundary Explorer energetic neutral atom imaging of the 5 April 2010 substorm
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Two Wide-Angle Imaging Neutral-Atom Spectrometers and Interstellar Boundary Explorer energetic neutral atom imaging of the 5 April 2010 substorm

机译:2010年4月5日亚暴的两个广角成像中性原子光谱仪和星际边界探测器高能中性原子成像

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This study is the first to combine energetic neutral atom (ENA) observations from Two Wide-Angle Imaging Neutral-Atom Spectrometers (TWINS) and Interstellar Boundary Explorer (IBEX). Here we examine the arrival of an interplanetary shock and the subsequent geomagnetically effective substorm on 5 April 2010, which was associated with the Galaxy 15 communications satellite anomaly. IBEX shows sharply enhanced ENA emissions immediately upon compression of the dayside magnetosphere at 08:26:17+/-9 s UT. The compression drove a markedly different spectral shape for the dayside emissions, with a strong enhancement at energies >1 keV, which persisted for hours after the shock arrival, consistent with the higher solar wind speed, density, and dynamic pressure (~10 nPa) after the shock. TWINS ENA observations indicate a slower response of the ring current and precipitation of ring current ions as low-altitude emissions min later, with the >50 keV ion precipitation leading the <10 keV precipitation by ~20 min. These observations suggest internal magnetospheric processes are occurring after compression of the magnetosphere and before the ring current ions end up in the loss cone and precipitate into the ionosphere. We also compare MHD simulation results with both the TWINS and IBEX ENA observations; while the overall fluxes and distributions of emissions were generally similar, there were significant quantitative differences. Such differences emphasize the complexity of the magnetospheric system and importance of the global perspective for macroscopic magnetospheric studies. Finally, Appendix A documents important details of the TWINS data processing, including improved binning procedures, smoothing of images to a given level of statistical accuracy, and differential background subtraction.
机译:这项研究是首次结合两个广角成像中性原子光谱仪(TWINS)和星际边界探测器(IBEX)的高能中性原子(ENA)观测结果。在这里,我们检查了星际撞击的到来以及随后在2010年4月5日发生的地磁有效亚暴,这与银河15通信卫星异常有关。 IBEX显示,在美国东部时间08:26:17 +/- 9 s压缩日间磁层后,ENA排放量急剧增加。压缩驱动了日间排放的光谱形状显着不同,能量> 1 keV时有很强的增强,在冲击到达后持续了数小时,这与更高的太阳风速,密度和动压(〜10 nPa)相一致。震惊之后。 TWINS ENA的观测结果表明,在随后的低空发射中,环流和环流离子的沉淀响应会较慢,这要在分钟之后进行,其中> 50 keV的离子沉淀将导致<10 keV的沉淀直到约20分钟。这些观察结果表明内部磁层过程是在磁层压缩之后,环电流离子最终进入损耗锥并沉淀到电离层之前发生的。我们还将MHD模拟结果与TWINS和IBEX ENA观测结果进行比较;虽然总的通量和排放分布总体上相似,但存在明显的数量差异。这种差异强调了磁层系统的复杂性和宏观磁层研究的全球视野的重要性。最后,附录A记录了TWINS数据处理的重要细节,包括改进的装箱程序,将图像平滑到给定的统计精度水平以及差分背景减法。

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