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A Statistical Study of the Solar Wind Dependence of Multi- Harmonic Toroidal ULF Waves Observed by the Arase Satellite

机译:统计研究太阳风的依赖多谐波的环形ULF波观测到Arase卫星

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摘要

Toroidal standing Alfvén wave is one of the ultra-low frequency waves that are frequently observed in the terrestrial magnetosphere. They sometimes exhibit multi-harmonic frequency spectra, indicating wide energy range input in the magnetosphere. However, their energy source has not been fully understood due to the lack of statistical studies. Here we used the data of the Arase satellite observations for ~3.5 years and conducted a statistical analysis of the solar wind dependence of the occurrence rate, wave power, and frequency of the multi-harmonic toroidal waves. We automatically detected the multi-harmonic waves and categorized them into four groups according to the solar wind velocity and the cone angle of the interplanetary magnetic field. We found that the occurrence rate and wave power of the multi-harmonic waves increase with the solar wind velocity on the flank sides. In the noon sector, the occurrence rate of the multi-harmonic waves increases with the decrease of the cone angle. The median frequency of the multi-harmonic waves on the dayside is positively correlated with the upstream wave frequency predicted by the theory of the ion beam instability for a small cone angle. The occurrence rate also increases with the solar wind dynamic pressure fluctuations. Therefore, we suggest that the Kelvin-Helmholtz instability, the upstream waves, and the dynamic pressure fluctuations are possible sources of the multi-harmonic waves. This study sheds light on the activity of the multi-harmonic waves which can affect radiation belt electrons under various solar wind conditions.
机译:环形站阿尔芬波是其中一个频繁的超低频波观察到的地球磁场。有时表现出multi-harmonic频率宽光谱,表明能量输入范围磁气圈。没有完全理解由于缺少吗统计研究。~ 3.5年,Arase卫星观测太阳能的进行了统计分析风依赖的出现率,波multi-harmonic的权力,和频率环向波。multi-harmonic海浪和分类成四组根据太阳风速度和行星际磁场的锥角字段。multi-harmonic海浪的力量增加太阳风速度在旁边。中午部门的出现率multi-harmonic波增加而减少锥角。multi-harmonic波的光面上是积极的与上游波频率理论预测的离子束小锥角不稳定。太阳能的出现率也增加风动态压力波动。表明Kelvin-Helmholtz不稳定,上游波,和动态压力波动的可能来源multi-harmonic波。multi-harmonic波的活动会影响辐射带电子在不同太阳风条件。

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