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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >SuperDARN observations of the driver wave associated with FLRs
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SuperDARN observations of the driver wave associated with FLRs

机译:SuperDARN观察司机的波与flr

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Ultra-low frequency (ULF) field line resonances(FLRs)cause oscillations in F-region plasma flows and can be detected in SuperDARN measured line-of-sight(l-o-s)velocities. In this paper, we characterize a ULF wave event with coordinated use of SuperDARN HF radars, optical instrumentation, ground based and space based magnetometers. On December 26, 2000 from 00:00-04:00 UT, the SuperDARN Pykkvibaer radar observes first and second harmonic FLR signatures at 0.8 mHz, while the Kodiak and Hankasalmi radars simultaneously observe the driver wave on open field lines at exactly the same 0.8 mHz frequency. These observations show that SuperDARN can provide a diagnostic of MHD wave propagation on open field lines and potentially be used to monitor MHD wave transmission across the magnetopause, and through the outer regions of the magnetosphere. MHD waves in the outer magnetosphere, which couple to FLRs, are seldom observed, and as far as we know this is the first report of a ground based observation of the driver wave. The observation of first and second harmonic FLRs in SuperDARN data is a unique and useful observation in the sense that it supports the theoretical body of work on expected behavior of FLRs, and their potential use in estimating magnetospheric properties such as density and magnetic topology. During the time interval of interest, Geotail is in the solar wind just outside the dawn flank region, and observes clear oscillations in the IMF Bz component at 0.8 mHz. High coherence is shown between the Geotail Bz oscillations and the radar Doppler velocities at 0.8 mHz, confirming that the 0.8 mHz FLR harmonic and the driver wave on open field lines is directly driven by the 0.8 mHz oscillation in the solar wind. Discrete ULF oscillations in the solar wind as direct drivers of ULF waves in the magnetosphere is a controversial topic, and the results reported here add to a growing body of evidence in support of direct solar wind drivers of ULF waves.
机译:超低频(ULF)领域共振(flr)导致F-region振荡等离子体流和SuperDARN能被探测到测量视线(l-o-s)速度。篇文章中,我们描述一个ULF波事件协调使用SuperDARN高频雷达、光学仪器仪表、地面和空间的基础磁力计。观察第一和二次谐波FLR签名在0.8 mHz,科迪亚克和Hankasalmi雷达同时观察司机波开放磁力线在完全相同的0.8 mHz频率。可以提供磁流体动力波传播的诊断吗在开放磁力线并可能被用来监控磁流体动力波的传播磁层,通过外部区域磁气圈。磁气圈,一对flr,很少观察到,据我们所知这是第一个地面观测的报告司机波。是一个独特的和谐波flr SuperDARN数据有用的观察,它支持理论的预期行为flr,他们在评估潜在用途如密度和磁性层的属性电磁拓扑。兴趣,Geotail太阳风黎明外侧面区域,观察清楚振荡在IMF Bz组件在0.8 mHz。高相干Geotail Bz之间的显示振荡和雷达多普勒速度0.8 mHz,确认0.8 mHz FLR谐波和司机波在开放电场线直接由0.8 mHz的振荡太阳风。太阳风直接驱动的ULF波磁气圈是一个有争议的话题,研究结果添加到越来越多的证据支持直接太阳风的司机的ULF波。

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