首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Localized Excitation of Electromagnetic Ion Cyclotron Waves From Anisotropic Protons Filtered by Magnetic Dips
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Localized Excitation of Electromagnetic Ion Cyclotron Waves From Anisotropic Protons Filtered by Magnetic Dips

机译:本地化的励磁电离子质子回旋波在各向异性过滤通过磁性下降

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摘要

The excitation of electrostatic and/or electromagnetic waves in the plasma universe is often associated with anisotropic velocity distributions of charged particles. In Earth's inner magnetosphere, this anisotropy can gradually develop as particles injected from the magnetotail drift around the Earth at different speeds depending on their energy and pitch angle. Here, we show that the perpendicular-moving and bouncing ions can be separated more abruptly near the injection front. These pitch-angle filters are localized magnetic dip structures formed by the diamagnetic behavior of the injected particles, which can trap perpendicular-moving ions and allow bouncing ions to overtake. The resulting ion anisotropy facilitates the rapid generation of electromagnetic ion cyclotron (EMIC) waves, which in turn can largely reshape the Van Allen radiation belts. This scenario is examined by case and statistical observations, together with numerical simulations that reproduce most of the observational signatures, to support the causal relationship between magnetic dips, anisotropic ion distributions, and localized excitation of EMIC waves. Our study highlights the important roles of magnetic dips in the inner magnetospheric dynamics, as pitch-angle filters of the injected ions and traveling hotspots of EMIC wave activities.
机译:静电和/或的激发电磁波在等离子宇宙经常与各向异性速度有关带电粒子的分布。内心的磁层,这种各向异性逐渐发展为粒子的注入围绕地球磁尾漂移在不同速度取决于他们的能源和螺旋角。在这里,我们表明,perpendicular-moving和反弹突然离子可以分离更近了注射。是局部磁泡结构形成的的抗磁性行为注入粒子,perpendicular-moving陷阱离子和允许跳跃离子取代。产生的离子各向异性的快速便利代的电磁离子回旋(位的)波,进而可以在很大程度上重塑范艾伦辐射带。检查情况和统计观察,结合数值模拟繁殖的大多数观测签名,支持之间的因果关系磁性下降,各向异性离子分布局部位的波的激发。突出了磁性下降的重要角色在内部磁性层的动态,螺旋角的离子注入和过滤器位的波活动的旅游热点地区。

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