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The First Observation of N~+ Electromagnetic Ion Cyclotron Waves

机译:第一次观察到的N ~ +电磁离子回旋波

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Observations from past space missions report on the significant abundance of N~+, in addition to those of O~+, outflowing from the terrestrial ionosphere and populating the near-Earth region. However, instruments on board current space missions lack the mass resolution to distinguish between the two, and often the role of N~+ in regulating the magnetosphere dynamics, is lumped together with that of O~+ ions. For instance, our understanding regarding the role of electromagnetic ion cyclotron (EMIC) waves in controlling the loss and acceleration of radiation belt electrons and ring current ions has been based on the contribution of He~+ and O~+ ions only. We report the first observations by Van Allen Probes of linearly polarized N~+ EMIC waves, which confirm the presence of N~+ in the terrestrial magnetosphere, and open up new avenues to particle energization, loss, and transport mechanisms, based on the altered magnetospheric plasma composition.
机译:从过去的太空任务观察报告相当丰富的N ~ +,除了O ~ +,从地面泄出电离层和填充近地区域。然而,仪器上当前的空间任务缺乏质量分辨率来区分两者之间,常常N ~ +的作用调节磁气圈动力学集总一起与O ~ +离子。了解有关的角色电磁离子回旋波(位的)控制的损失和加速度电子辐射带和环电流离子已经根据他的贡献~ +和O ~ +离子。范艾伦辐射探测器的线性极化N ~ +的位的波浪,确认中N ~ +的存在地球磁气圈,打开新途径粒子激发、损失和传输机制,基于改变磁性层的等离子体组成。

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