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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Global-Scale ULFWaves Associated With SSC Accelerate Magnetospheric Ultrarelativistic Electrons
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Global-Scale ULFWaves Associated With SSC Accelerate Magnetospheric Ultrarelativistic Electrons

机译:全球范围内ULFWaves SSC加速磁性层的Ultrarelativistic电子

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We study electron behavior in the outer radiation belts during the 16 July 2017 storm sudden commencement (SSC), in which prompt intensification of ultrarelativistic electron fluxes was observed at around L = 4.8 by Van Allen Probe B immediately after an interplanetary shock. The electron fluxes in multiple energy channels show clear oscillations in the Pc5 frequency range, although the oscillation characteristics are quite different in different energy channels. At energies above ~1 MeV, the oscillation periods were very close to the electron drift period, which resembles an energy spectrogram evolution expected for an energetic particle injection event and its drift echoes. At lower energies, however, the oscillation periods hardly depended on the energy: They were very close to the ultralow frequency (ULF) wave period derived from electric field measurements (about 250 s according to wavelet analysis). These complex signatures are consistent with the picture of drift resonance between electrons and short-lived ULF waves with low azimuthal wave numbers. Good agreement between the observations and numerical simulations confirms that shock-induced global-scale ULF waves can efficiently accelerate outer belt ultrarelativistic electrons up to 3.4 MeV over a time scale shorter than 1 hr.
机译:我们研究电子行为的外部辐射在2017年7月16日风暴突然腰带毕业典礼(SSC),提示强化ultrarelativistic电子通量被范观察L = 4.8左右艾伦探测器B后立即一个星际冲击。Pc5频道显示明显的振荡频率范围,虽然振荡有很大的不同在不同的特征能源通道。振荡时间非常接近电子漂移,这就像一个能量光谱图进化一个精力充沛的粒子注入事件及其漂移回声。较低的能量,然而,振荡周期不依赖于能源:他们非常接近超低频(ULF)波的周期来自电场测量(约根据小波分析250年代)。复杂的签名是一致的漂移共振电子和之间的照片短暂的ULF波较低的方位波数字。和数值模拟证实了触觉全球范围内ULF波有效地加快外皮带3.4兆电子伏在ultrarelativistic电子比1小时短时间尺度。

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