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首页> 外文期刊>Annales Geophysicae >First simultaneous observations of flux transfer events at the high-latitude magnetopause by the Cluster spacecraft and pulsed radar signatures in the conjugate ionosphere by the CUTLASS and EISCAT radars
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First simultaneous observations of flux transfer events at the high-latitude magnetopause by the Cluster spacecraft and pulsed radar signatures in the conjugate ionosphere by the CUTLASS and EISCAT radars

机译:首次同时观测星团飞行器在高纬度磁更年期的通量传输事件和CUTLASS和EISCAT雷达在共轭电离层中的脉冲雷达信号

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摘要

Cluster magnetic field data are studied during an outbound pass through the post-noon high-latitude magnetopause region on 14 February 2001. The onset of several minute perturbations in the magnetospheric field was observed in conjunction with a southward turn of the interplanetary magnetic field observed upstream by the ACE spacecraft and lagged to the subsolar magnetopause. These perturbations culminated in the observation of four clear magnetospheric flux transfer events (FTEs) adjacent to the magnetopause, together with a highly-structured magnetopause boundary layer containing related field features. Furthermore, clear FTEs were observed later in the magnetosheath. The magnetospheric FTEs were of essentially the same form as the original "flux erosion events" observed in HEOS-2 data at a similar location and under similar interplanetary conditions by Haerendel et al. (1978). We show that the nature of the magnetic perturbations in these events is consistent with the formation of open flux tubes connected to the northern polar ionosphere via pulsed reconnection in the dusk sector magnetopause. The magnetic footprint of the Cluster spacecraft during the boundary passage is shown to map centrally within the fields-of-view of the CUTLASS SuperDARN radars, and to pass across the field-aligned beam of the EISCAT Svalbard radar (ESR) system. It is shown that both the ionospheric flow and the backscatter power in the CUTLASS data pulse are in synchrony with the magnetospheric FTEs and boundary layer structures at the latitude of the Cluster footprint. These flow and power features are subsequently found to propagate poleward, forming classic "pulsed ionospheric flow" and "poleward-moving radar auroral form" structures at higher latitudes. The combined Cluster-CUTLASS observations thus represent a direct demonstration of the coupling of momentum and energy into the magnetosphere-ionosphere system via pulsed magnetopause reconnection. The ESR observations also reveal the nature of the structured and variable polar ionosphere produced by the structured and time-varying precipitation and flow.Key words. Ionosphere (auroral ionosphere) Magentospheric physics (magnetopause, cusp and boundary layers; magnetosphere-ionosphere interactions)
机译:在2001年2月14日穿过出午后高纬度磁更年期区域时研究了簇磁场数据。观察到了磁层场中几分钟的扰动,同时观察到上游的行星际磁场向南转动由ACE宇宙飞船发射,并滞后至太阳下磁层顶。这些扰动最终导​​致观察到与磁层顶相邻的四个清晰的磁层通量传递事件(FTE),以及包含相关场特征的高度结构化的磁层顶边界层。此外,稍后在磁石中观察到清晰的FTE。 Haerendel等人在相似的位置和相似的行星际条件下,磁层FTE的形式基本上与HEOS-2数据中观察到的原始“磁通腐蚀事件”相同。 (1978)。我们表明在这些事件中的磁扰动的性质与通过黄昏扇形绝经中的脉冲重新连接而连接到北极电离层的开放通量管的形成是一致的。边界飞行过程中,集群航天器的磁足迹显示为在CUTLASS SuperDARN雷达的视场内居中映射,并穿过EISCAT斯瓦尔巴特雷达(ESR)系统的场对准光束。结果表明,CUTLASS数据脉冲中的电离层流和反向散射功率都与团簇足迹纬度上的磁层FTE和边界层结构同步。随后发现这些流量和功率特征向极点传播,在较高纬度上形成经典的“脉冲电离层流”和“极点移动雷达极光形式”结构。因此,Cluster-CUTLASS组合观测结果代表了通过磁磁更年期重新连接将动量和能量耦合到磁层-电离层系统中的直接证明。 ESR观测还揭示了结构化和随时间变化的降水和流量产生的结构化和可变极性电离层的性质。​​ 关键词。 电离层(极光电离层)磁层物理(磁层顶,尖顶和边界层;磁层-电离层相互作用)

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