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On Differentiating Multiple Types of ULF Magnetospheric Waves in Response to Solar Wind Periodic Density Structures

机译:在区分多种类型的ULF磁性层的波浪对太阳风的回应周期性的密度结构

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摘要

Identifying the nature and source of ultra-low frequencies (ULF) waves (f ?4 mHz) at discrete frequencies in the Earth's magnetosphere is a complex task. The challenge comes from the simultaneous occurrence of externally and internally generated waves, and the ability to robustly identify such perturbations. Using a recently developed robust spectral analysis procedure, we study an interval that exhibited in magnetic field measurements at geosynchronous orbit and in-ground magnetic observatories both internally supported and externally generated ULF waves. The event occurred on 9 November 2002 during the interaction of the magnetosphere with two interplanetary shocks that were followed by a train of 90 min solar wind periodic density structures. Using the Wang-Sheeley-Arge model, we mapped the source of this solar wind stream to an active region and a mid-latitude coronal hole just prior to crossing the Heliospheric current sheet. In both the solar wind density and magnetospheric field fluctuations, we separated broad power increases from enhancements at specific frequencies. For the waves at discrete frequencies, we used the combination of satellite and ground magnetometer observations to identify differences in frequency, polarization, and observed magnetospheric locations. The magnetospheric response was characterized by: (a) forced breathing by periodic solar wind dynamic pressure variations below ≈1 mHz, (b) a combination of directly driven oscillations and wave modes triggered by additional mechanisms (e.g., shock and interplanetary magnetic field discontinuity impact, and substorm activity) between ≈1 and 4 mHz, and (c) largely triggered modes above ≈4 mHz.
机译:识别超低的性质和来源频率(ULF)波离散(f ? 4 mHz)频率在地球的磁气圈复杂的任务。同时发生的外部内部生成的波浪,和能力确定这样的扰动。最近开发健壮的光谱分析过程,我们研究一个区间,在展出在同步轨道磁场的测量轨道和掩埋式地磁观测站支持内部和外部生成的ULF波。在磁层的交互随后两个星际冲击90分钟的火车太阳风周期性密度结构。映射这太阳风流的来源活跃的地区和中纬度日冕洞穿越之前日球电流床单磁性层的磁场波动,我们分开广泛的权力增加从增强特定的频率。频率,我们使用卫星的结合和地面磁力仪观测来确定不同的频率、极化和观察磁性层的位置。磁性层的反应的特点是:(一)强迫呼吸通过周期性的太阳风动态压力变化低于≈1 mHz, (b)直接驱动振动和组合波模式引发了额外的机制(例如,震惊和行星际磁场不连续的影响,亚暴活动)≈1和4兆赫兹之间,(c)很大程度上引发了以上模式≈4 mHz。

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