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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Ultralow FrequencyWaves as an Intermediary for SolarWind Energy Input Into the Radiation Belts
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Ultralow FrequencyWaves as an Intermediary for SolarWind Energy Input Into the Radiation Belts

机译:超低FrequencyWaves作为中介SolarWind能量输入辐射带

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Enhancements of electron fluxes in the outer radiation belt have been closely linked to increases in solar wind speed and density as well as to prolonged intervals of southward interplanetary magnetic field. Periodic oscillations in the Earth’s magnetic field with frequencies in the range of a few millihertz (ultralow frequency or ultralow frequency waves) may be an intermediary through which these solar wind drivers influence radiation belt dynamics due to their potential for resonant interactions with energetic electrons causing the radial migration of resonant electrons. Using data from more than 180 ground magnetometers contributing to the worldwide SuperMAG collaboration, we explore possible relationships between relativistic electron flux variations and the spatial and temporal profiles of ultralow frequency wave power contained in the Pc5 frequency band (2–7 mHz). During 19 geomagnetic storms marked by relativistic (1.5 MeV < E < 6 MeV) electron flux enhancements and 19 storms that led to prolonged electron flux depletions, Pc5 wave power is found penetrating to L shells as low as 2–3. The enhancement of Pc5 wave power starts almost simultaneously with the storm onset. The depth of wave activity penetration was found associated with the strength of geomagnetic activity (Spearman’s p = 0.54), which is also related to the location of electron flux maximum observed in the recovery phase. Pc5 wave activity persists longer (for up to ≈62 hr) for those storms that produced relativistic electrons. We also investigate the combination of interplanetary conditions necessary to differentiate the response of relativistic electron fluxes to geomagnetic storms. A coupling function that captures the increased reconnection rate at the dayside magnetopause affecting magnetospheric processes which may produce Pc5 wave power offers an additional key to further understanding the outer belt dynamics.
机译:增强电子通量的外层辐射带密切相关增加太阳风速度和密度向南长间隔的行星际磁场。地球的磁场与振荡频率范围内的一些压力(超低频或超低频波)可能是一个中介,这些太阳能吗风力驱动影响辐射带动态由于他们的共振相互作用潜力精力充沛的电子导致径向迁移的共振电子。超过180个地面磁力计的贡献全球SuperMAG协作,我们探索可能的关系相对论性电子通量的变化空间和时间的超低波浪发电Pc5中包含频率频带(2 - 7日mHz)。风暴的相对论(1.5兆电子伏< E < 6兆电子伏)电子通量增强和19风暴导致长时间的电子通量消逝,发现Pc5波浪能渗透到L壳低至2 - 3。几乎同时,风暴开始发病。发现与地磁的强度有关活动(枪兵的p = 0.54),这也是有关电子通量最大的位置在经济复苏阶段。持续时间(≈62小时)风暴产生的相对论性电子。也调查的结合星际必要条件区分相对的反应电子通量地磁风暴。函数,捕获增加重新连接利率的光面磁层的影响这可能会产生Pc5磁性层的过程波浪发电进一步提供额外的关键了解外皮带动力学。

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