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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Investigating energetic electron precipitation through combining ground-based and balloon observations
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Investigating energetic electron precipitation through combining ground-based and balloon observations

机译:研究高能电子降水通过结合地面和气球观察

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摘要

A detailed comparison is undertaken of the energetic electron spectra and fluxes of two precipitation events that were observed in 18/19 January 2013. A novel but powerful technique of combining simultaneous ground-based subionospheric radio wave data and riometer absorption measurements with X-ray fluxes from a Balloon Array for Relativistic Radiation-belt Electron Losses (BARREL) balloon is used for the first time as an example of the analysis procedure. The two precipitation events are observed by all three instruments, and the relative timing is used to provide information/insight into the spatial extent and evolution of the precipitation regions. The two regions were found to be moving westward with drift periods of 5–11 h and with longitudinal dimensions of ~20° and ~70° (1.5–3.5 h of magnetic local time). The electron precipitation spectra during the events can be best represented by a peaked energy spectrum, with the peak in flux occurring at ~1–1.2 MeV. This suggests that the radiation belt loss mechanism occurring is an energy-selective process, rather than one that precipitates the ambient trapped population. The motion, size, and energy spectra of the patches are consistent with electromagnetic ion cyclotron-induced electron precipitation driven by injected 10–100 keV protons. Radio wave modeling calculations applying the balloon-based fluxes were used for the first time and successfully reproduced the ground-based subionospheric radio wave and riometer observations, thus finding strong agreement between the observations and the BARREL measurements.
机译:是进行一个详细的比较充满活力的电子光谱和通量降水事件中观察到18/192013年1月。同时结合地面subionospheric无线电波数据和宇宙噪声测量器吸收与x射线通量的测量相对辐射带气球数组电子损失(桶)气球用于第一次作为分析的一个例子过程。观察到三个工具,相对时间是用来提供空间范围和信息/见解降水区域的进化。西迁的地区被发现第5 - 11漂移的h和纵向尺寸-3.5 ~ 20°~ 70°(1.5 h磁当地时间)。光谱在事件可以最好的代表由能谱达到高峰,高峰通量发生~ 1 - 1.2兆电子伏。辐射带的发生机制是一个损失energy-selective过程,而不是一个沉淀环境困人口。运动、大小和能量谱的补丁符合电磁离子cyclotron-induced电子降水驱动通过注射10 - 100 keV质子。应用balloon-based建模计算通量和首次使用成功地再现了地面subionospheric无线电波和宇宙噪声测量器观察,从而找到强有力的协议观察和桶之间测量。

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