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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Oxygen Ion Dynamics in the Earth's Ring Current: Van Allen Probes Observations
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Oxygen Ion Dynamics in the Earth's Ring Current: Van Allen Probes Observations

机译:氧气在地球的环电流离子动力学:范艾伦辐射探测器的观测

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摘要

Oxygen (O~+) enhancements in the inner magnetosphere are often observed during geomagnetically active times, such as geomagnetic storms. In this study, we quantitatively examine the difference in ring current dynamics with and without a substantial O~+ ion population based on almost 6 years of Van Allen Probes observations. Our results have not only confirmed previous finding of the role of O~+ ions to the ring current but also found that abundant O~+ ions are always present during large storms when sym-H<-60 nT without exception, while having the pressure ratio (R) between O~+ and proton (H~+) larger than 0.8 and occasionally even larger than 1 when L < 3. Simultaneously, the pressure anisotropy decreases with decreasing sym-H and increasing L shell. The pressure anisotropy decrease during the storm main phase is likely related to the pitch angle isotropization processes. In addition, we find that R increases during the storm main phase and then decreases during the storm recovery phase, suggesting faster buildup and decay of O~+ pressure compared to H+ ions, which are probably associated with some species dependent source and/or energization as well as loss processes in the inner magnetosphere.
机译:氧气(O ~ +)增强内部磁气圈通常期间观察到的眼睛活跃时期,比如地磁风暴。环电流的差异和动力学没有实质性的O ~ +离子数量的基础上近6年的范艾伦辐射探测器的观测。我们的结果不仅证实了之前发现O ~ +离子作用的戒指目前还发现丰富的O ~ +离子大风暴中一直在场当sym-H < -60nT无一例外,而有压力之间的比值(R) O ~ +和质子(H ~ +)大比0.8,偶尔甚至大于1时L < 3。降低和减少sym-H增加L壳。暴风雨可能相关的主要阶段螺旋角isotropization流程。此外,我们发现R在增加风暴在主要阶段,又减少了风暴复苏阶段,这意味着更快的积累和衰减的O ~ +压力相比,H +离子,这可能与一些物种依赖和/或激发以及来源损失过程内部的磁场。

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