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首页> 外文期刊>Geomagnetism and aeronomy >Experimental evidence for direct penetration of ULF waves from the solar wind and their possible effect on acceleration of radiation belt electrons
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Experimental evidence for direct penetration of ULF waves from the solar wind and their possible effect on acceleration of radiation belt electrons

机译:来自太阳风的ULF波的直接穿透及其对辐射带电子加速的可能影响的实验证据

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摘要

The event of March 12-19, 2009, when a moderately high-speed solar wind stream flew around the Earth's magnetosphere and carried millihertz ultralow-frequency (ULF) waves, has been analyzed. The stream caused a weak magnetic storm (D_(st min) = -28 nT). Since March 13, fluxes of energetic (up to relativistic) electrons started increasing in the magnetosphere. Comparison of the spectra of ULF oscillations observed in the solar wind and magnetosphere and on the Earth's surface indicated that a stable common spectral peak was present at frequencies of 3-4 mHz. This fact is interpreted as evidence that waves penetrated directly from the solar wind into the magnetosphere. Possible scenarios describing the participation of oscillations in the acceleration of medium-energy (E > 0.6 MeV) and high-energy (E > 2.0 MeV) electrons in the radiation belt are discussed. Based on comparing the event with the moderate magnetic storm of January 21-22, 2005, we concluded that favorable conditions for analyzing the interaction between the solar wind and the magnetosphere are formed during a deep minimum of solar activity.
机译:分析了2009年3月12日至19日的事件,当时有适度的高速太阳风流围绕地球磁层飞行,并携带了毫赫兹的超低频(ULF)波。气流引起弱磁暴(D_(st min)= -28 nT)。自3月13日以来,高能(直到相对论)电子的通量在磁层中开始增加。在太阳风和磁层以及地球表面观察到的ULF振荡光谱的比较表明,在3-4 mHz的频率上存在一个稳定的共同谱峰。这一事实被解释为表明波直接从太阳风穿透进入磁层的证据。讨论了描述振动参与辐射带中能量(E> 0.6 MeV)和高能量(E> 2.0 MeV)电子的加速的可能情况。通过将该事件与2005年1月21日至22日的中度磁暴进行比较,我们得出结论,在极低的太阳活动期间形成了分析太阳风与磁层相互作用的有利条件。

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