首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Flux Enhancements of Field-Aligned Low-Energy O~+ Ion (FALEO) in the Inner Magnetosphere: A Possible Source of Warm Plasma Cloak and Oxygen Torus
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Flux Enhancements of Field-Aligned Low-Energy O~+ Ion (FALEO) in the Inner Magnetosphere: A Possible Source of Warm Plasma Cloak and Oxygen Torus

机译:通量增强Field-Aligned低能O ~ +离子(FALEO)内磁气圈:可能的热等离子体源斗篷和氧气环面

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摘要

Flux enhancements of field-aligned low-energy O~+ ion (FALEO) are simultaneously observed by Arase, Van Allen Probes A and B in the nightside inner magnetosphere during 05–07 UT on September 22, 2018. FALEOs appear after a magnetic dipolarization signature with approximately 6–20 min delay. It has the energy-dispersion signature from a few keV to ~100 eV only in the direction parallel to the magnetic field at Arase, while it decreases its energy from a few keV down to 10 eV in both the parallel and antiparallel directions at Probes A and B. We perform a numerical simulation to trace trajectories of test O~+ ions in a model magnetosphere, which are launched from above the ionosphere 3–15 min after a substorm. Flying virtual satellites that have the same orbits as the real satellites, we create virtual energy-time spectrograms of O~+ ions to compare with the observed ones. Results show a very good correspondence between them, indicating that FALEOs originate from ionospheric O~+ ions that are extracted from the upper ionosphere at substorm onset and flow along the magnetic field toward the geomagnetic equator. It is also revealed that 3–9 hr after their launch, test O~+ ions less than 400 eV have a spatial distribution in the inner magnetosphere which is similar to those of the warm plasma cloak and the oxygen torus. We therefore conclude that FALEO is a source of those cold ion populations.
机译:通量增强field-aligned低能O ~ +离子(FALEO)同时Arase观察到,范艾伦辐射探测器在阴面内部A和B磁气圈在05-07 UT 9月22日2018. dipolarization签名与大约6 20最小延迟。从几keV只~ 100 eV的方向在Arase平行于磁场,而它减少它的能量从几keV 10 eV在平行和反平行的方向在探针A和b,我们执行一个数值模拟跟踪轨迹的测试O ~ +离子在模型中磁气圈,发射的在电离层亚暴后至最小值。有相同的虚拟卫星飞行真正的卫星轨道,我们创建虚拟energy-time O ~ +离子的谱图比较观察到的。它们之间的通信,这表明FALEOs来源于电离层O ~ +离子从上层电离层中抽取的吗亚暴开始沿着磁场和流地磁赤道。透露,3 - 9小时后启动,测试O ~ +离子少于400 eV空间分布在磁层内部类似那些温暖的等离子体的斗篷和氧气环面。源的冷离子的数量。

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    《Journal of Geophysical Research, A. Space Physics: JGR》 |2022年第3期|2021JA030008-1-2021JA030008-19|共19页
  • 作者单位

    Institute for Space-Earth Environmental Research, Nagoya University, Nagoya, Japan;

    Graduate School of Science, Kyoto University, Kyoto, Japan;

    Institute of Space and Astronautical Science, Japan Aerospace Exploration Agency, Sagamihara, JapanDepartment of Space Systems Engineering, Kyushu Institute of Technology, Kitakyusyu, JapanDepartment of Physics and Astronomy, University of Iowa, Iowa City, IA, USAInstitute for the Study of Earth, Oceans, and Space, University of New Hampshire, Durham, NH, USASolar System Exploration Division, Goddard Space Flight Center, Greenbelt, MD, USASpace Sciences and Applications Group, Los Alamos National Laboratory, Los Alamos, NM, USAJohns Hopkins University Applied Physics Laboratory, Laurel, MD, USA;

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