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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Magnetosonic wave excitation by ion ring distributions in the Earth’s inner magnetosphere
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Magnetosonic wave excitation by ion ring distributions in the Earth’s inner magnetosphere

机译:通过离子环磁声波激励分布在地球的内部磁气圈

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摘要

Combining Time History of Events and Macroscale Interaction during Substorms (THEMIS) wave and particle observations and a quantitative calculation of linear wave growth rate, we demonstrate that magnetosonic (MS) waves can be locally excited by ion ring distributions in the Earth’s magnetosphere when the ion ring energy is comparable to the local Alfven energy. MS waves in association with ion ring distributions were observed by THEMIS A on 24 November 2010 in the afternoon sector, both outside the plasmapause where the wave spectrum varied with fLHR and inside the plasmapause where the wave frequency band remained nearly constant. Our plasma instability analysis in three different regions shows that higher and narrow frequency band MS waves are excited locally outside the plasmapause, and lower and broad frequency band MS waves are excited in the region where the density slightly increases. However, there is no evidence for wave excitation inside the plasmapause, and wave propagation from a distant source is needed to explain their existence. The simulation of the MS wave growth rate spectra during this event agrees reasonably well with the observed wave magnetic field power spectra. We also simulated a MS wave event on 19 October 2011 in the dusk sector and found that the ion ring distributionwith an ion ring energy slightly higher than the local Alfven energy can excite the typical broad band MS waves outside the plasmapause.
机译:结合时间的历史事件和宏观尺度在亚暴(裁判)波和交互粒子观测和定量计算线性波的增长率,我们证明magnetosonic (MS)波局部兴奋的离子环分布地球的磁气圈当离子环能量与当地阿尔芬能量。与离子环分布忒弥斯观察到的2010年11月24日下午部门,在等离子体层顶波频谱随fLHR和在哪里内部的等离子体层顶波频率乐队仍然几乎不变。不稳定分析三个不同的地区表明高和窄频带波在本地感到兴奋等离子体层顶,降低和广泛的频带波女士感到兴奋的地方密度略有增加。内波激发的证据从一个遥远的等离子体层顶,波传播源需要解释他们的存在。模拟的女士波增长率光谱在这事件也相当不错观察磁场波功率谱。还模拟波女士2011年10月19日事件在黄昏部门,发现离子环distributionwith离子环能源略高于当地阿尔芬能源可以激发典型的宽带波外的女士等离子体层顶。

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