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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Effects of a Realistic O~+ Source on Modeling the Ring Current
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Effects of a Realistic O~+ Source on Modeling the Ring Current

机译:一个现实的O ~ +源对建模的影响环电流

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摘要

We use the UNH‐IMEF electric field model to simulate the convection of O~+ from the near‐earth plasma sheet into the ring current during the 17 March 2015 storm. Using Van Allen Probes data from the night side apogee, we reconstruct a realistic O~+ source. Modeling this storm using the UNH‐IMEF electric field and a dipole magnetic field has previously been found to have good agreement. Using the realistic source along with drift times and charge exchange loss from these results, we model an inbound pass near the peak of the storm where O~+ is increasingly dominant over H~+. We find that the time‐varying realistic O~+ source is necessary to reproduce the observed spectral features and the O~+ pressure enhancements at low L‐shells, while our previous results showed that the H~+ was able to be modeled sufficiently with a simple, unchanging boundary condition. Further, our results show that adiabatic convective transport of O~+ from the near‐earth plasma sheet (L ~ 6) can explain the observed ring current enhancements.
机译:我们使用中IMEF电场模型模拟对流O ~ +的靠近地球等离子体片放到环电流在2015年3月17日风暴。从晚上远地点探测数据,我们重建一个现实的O ~ +源。风暴使用中IMEF电场和偶极子磁场曾被发现有良好的协议。源和漂移时间和电荷交换从这些结果损失,我们入站传递模型风暴的峰值附近O ~ +在哪里日益主导/ H ~ +。时间量不同现实O ~ +来源是必要的观察到的光谱特性和繁殖在低L O ~ +压力增强高壳我们之前的结果表明,H ~ +了足够用一个简单的建模,不变的边界条件。结果表明,绝热对流运输O ~ +从地球附近检测等离子板(L ~ 6)可以解释观察到的环电流增强。

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