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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >The Source, Significance, and Magnetospheric Impact of Periodic Density Structures Within Stream Interaction Regions
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The Source, Significance, and Magnetospheric Impact of Periodic Density Structures Within Stream Interaction Regions

机译:流互动区域内周期密度结构的源极,重要性和磁体影响

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摘要

We present several examples of magnetospheric ultralow frequency pulsations associated with stream interaction regions and demonstrate that the observed magnetospheric pulsations were also present in the solar wind number density. The distance of the solar wind monitor ranged from just upstream of Earth's bow shock to 261 RE, with a propagation time delay of up to 90 min. The number density oscillations far upstream of Earth are offset from similar oscillations observed within the magnetosphere by the advection timescale, suggesting that the periodic dynamic pressure enhancements were time stationary structures, passively advecting with the ambient solar wind. The density structures are larger than Earth's magnetosphere and slowly altered the dynamic pressure enveloping Earth, leading to a quasi-static and globally coherent "forced-breathing" of Earth's dayside magnetospheric cavity. The impact of these periodic solar wind density structures was observed in both magnetospheric magnetic field and energetic particle data. We further show that the structures were initially smaller-amplitude, spatially larger, structures in the upstream slow solar wind and that the higher-speed wind compressed and amplified these preexisting structures leading to a series of quasiperiodic density structures with periods typically near 20 min. Similar periodic density structures have been observed previously at L1 and in remote images, but never in the context of solar wind shocks and discontinuities. The existence of periodic density structures within stream interaction regions may play an important role in magnetospheric particle acceleration, loss, and transport, particularly for outer zone electrons that are highly responsive to ultralow frequency wave activity.
机译:我们介绍了与流相互作用区域相关的磁体超级频率脉动的几个例子,并证明观察到的磁体脉动也存在于太阳风数密度中。太阳风监视器的距离从地球弓震动的刚刚的上游到261 RE,传播时间延迟高达90分钟。远处的地球上游的数量密度振荡是通过平流秒的偏移观察到的类似振荡,这表明周期性的动态压力增强是时间静止结构,与环境太阳风相传。密度结构大于地球磁层,慢慢改变了地球的动态压力,导致地球蒸汽磁体腔的准静态和全球相干“强制呼吸”。在磁体磁场和能量粒子数据中观察到这些周期性太阳脉密度结构的影响。我们进一步表明,该结构最初是较小的幅度,空间较大,在上游慢太阳风中的结构,并且更高速度的风压缩并扩增了这些预先存在的结构,导致一系列QuaSiodic密度结构,周期通常接近20分钟。先前在L1和远程图像中观察了类似的周期性密度结构,但从不在太阳风冲击和不连续性的背景下。流相互作区内的周期性密度结构的存在可以在磁体颗粒加速度,损耗和运输中起着重要作用,特别是对于高响应于超频率波活动的外部区域电子。

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