首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Modeling radiation belt electron acceleration by ULF fastmode waves, launched by solar wind dynamic pressure fluctuations
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Modeling radiation belt electron acceleration by ULF fastmode waves, launched by solar wind dynamic pressure fluctuations

机译:通过ULF快速模式波模拟辐射带电子加速,由太阳风动压力波动发射

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We investigate the magnetospheric MHD and energetic electron response to a Storm Sudden Commencement (SSC) and subsequent magnetopause buffeting, focusing on an interval following an SSC event on 25 November 2001. We find that the electron flux signatures observed by LANL, Cluster, and GOES spacecraft during this event can largely be reproduced using an advective kinetic model for electron phase space density, using externally prescribed electromagnetic field inputs, (herein described as a “test-kinetic model”) with electromagnetic field inputs provided by a 2-D linear ideal MHD model for ULF waves. In particular, we find modulations in electron flux phase shifted by 90? from the local azimuthal ULF wave electric field (Eф) and a net enhancement in electron flux after 1.5 h for energies between 500 keV and 1.5 MeV near geosynchronous orbit.We also demonstrate that electrons in this energy range satisfy the drift resonance condition for the ULF waves produced by the MHD model. This confirms the conclusions reached by Tan et al. (2011), that the energization process in this case is dominated by drift-resonant interactions between electrons and MHD fast mode waves, produced by fluctuations in solar wind dynamic pressure.
机译:我们调查了磁层MHD和高能电子对暴风雨爆发(SSC)和随后的磁更震震荡的反应,重点是2001年11月25日SSC事件发生后的间隔。在此事件中,航天器可以使用电子相空间密度的对流动力学模型,使用外部规定的电磁场输入(此处称为“测试动力学模型”)和二维线性理想值提供的电磁场输入来很大程度上复制。 ULF波的MHD模型。特别是,我们发现电子通量相移90 ??来自当地同步ULF波动电场(Eф)和1.5 h后在地球同步轨道附近500 keV和1.5 MeV之间的能量的电子通量的净增强。我们还证明了在此能量范围内的电子满足ULF的漂移共振条件MHD模型产生的波浪这证实了Tan等人得出的结论。 (2011年),在这种情况下的通电过程是由电子和MHD快速模式波之间的漂移-共振相互作用所主导的,该相互作用是由太阳风动压力的波动产生的。

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