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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Electrodynamics of the high-latitude trough: Its relationship with convection flows and field-aligned currents
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Electrodynamics of the high-latitude trough: Its relationship with convection flows and field-aligned currents

机译:高纬槽的电动力学:其与对流流动和场定向电流的关系

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We present a detailed case study of the electrodynamics of a high-latitude trough observed at ~ 12 UT (~1 MLT) on 8 March 2008 using multiple instruments, including incoherent scattering radar (ISR), GPS total electron content (TEC), magnetometers, and auroral imager. The electron density within the trough dropped as much as 80% within 6 minutes. This trough was collocated with a counterclockwise convection flow vortex, indicating divergent horizontal electric fields and currents. Together with a collocated dark area shown in auroral images, the observations provide strong evidence for an existence of downward field-aligned currents (FACs) collocated with the high-latitude trough. This is further supported by assimilative mapping of ionospheric electrodynamics results. In addition, the downward FACs formed at about the same time as a substorm onset and east of the Harang reversal, suggesting it is part of the substorm current wedge. It has long been a puzzle why this type of high-latitude trough predominantly occurs just east of the Harang reversal in the postmidnight sector. We suggest that the high-latitude trough is associated with the formation of downward FACs of the substorm current system, which usually occur just east of the Harang reversal. In addition, we find that the ionospheric electron temperature within the high latitude trough decreases in the F region while increasing in the E region. We discuss possible mechanisms responsible for the complex change in electron temperature, such as ion composition change and/or presence of downward FACs. Key PointsMulti-instrument study of the high-latitude trough electrodynamicsTrough is associated with anti-clockwise flow vortex and substorm downward FACsComplex Te profile observed in the trough and due to downward FACs
机译:我们提供了一个使用2008年3月8日在〜12 UT(〜1 MLT)观测到的高纬槽电动力学的详细案例研究,其中使用了非相干散射雷达(ISR),GPS总电子含量(TEC),磁力计以及极光成像仪。槽内的电子密度在6分钟内下降了80%。该槽与逆时针对流旋流并置,表明水平电场和电流发散。连同极光图像中显示的并置的暗区,这些观察结果为存在与高纬度槽并置的向下场对准流(FAC)提供了有力的证据。电离层电动力学结果的同化映射进一步支持了这一点。此外,向下的FAC大约在亚暴开始和哈朗逆转以东的同一时间形成,表明这是亚暴当前楔形的一部分。长期以来一直令人困惑的是,为什么这种高纬度谷主要发生在午夜之后的哈朗逆转以东。我们认为,高纬度谷与亚暴流系统的向下FAC的形成有关,这通常发生在哈朗逆转以东。此外,我们发现高纬度槽内的电离层电子温度在F区下降,而在E区上升。我们讨论了可能造成电子温度复杂变化的机制,例如离子组成变化和/或存在向下的FAC。关键点高纬槽电动力学的多仪器研究槽与逆时针流动涡流和亚暴向下FAC相关联在槽中观察到的复杂Te剖面和由于FAC向下

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