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Equatorward propagating auroral arcs driven by ULF wave activity: Multipoint ground- and space-based observations in the dusk sector auroral oval

机译:由ULF波活动驱动的赤道传播极光弧:黄昏区极光椭圆中的多点地基和空间观测

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摘要

Observations of multiple equatorward propagating arcs driven by a resonant Alfvén wave on closed field lines are presented. Data sets from the European Incoherent Scatter Svalbard Radar (ESR) and Meridian Scanning Photometer in Longyearbyen, All-Sky Camera in Ny Ålesund, ground magnetometer data in Svalbard, and Defense Meteorological Satellite Program (DMSP) F16 satellite were utilized to study the arc structures. The arcs had an equatorward phase propagation of ~0.46 km s−1 and were observed in the dusk ionosphere from 1800 to 2030 magnetic local time. Analysis of the optical data indicates that the Alfvén wave had a frequency of 1.63 mHz and an azimuthal wave number, m ~ −20 (the negative sign indicating a westward propagation). Inverted-V electron populations associated with field-aligned currents of between 0.5 and 0.8 μA m−2 are observed by DMSP F16 inside the arc structures. In addition to electron density enhancements associated with the arcs, the ESR data show elevated ion temperatures in between the arcs consistent with electric field enhancements and ionospheric heating effects. The combination of ESR and DMSP F16 data indicates that the wave energy was dissipated through ionospheric Joule and/or ion frictional heating and acceleration of particles into the ionosphere, generating the auroral displays. The fine-scale structuring, in addition to the propagation direction and scale size, would suggest that the auroral features are the signatures of a field line resonance driven by an interaction with a compressional fast mode wave propagating earthward from the magnetotail.
机译:提出了由闭合场线上的共振Alfvén波驱动的多个赤道传播弧的观测结果。利用欧洲不相干散射斯瓦尔巴德雷达(ESR)和朗伊尔城的子午线扫描光度计,尼奥勒松的全天候相机,斯瓦尔巴德群岛的地磁仪数据以及国防气象卫星计划(DMSP)F16卫星的数据集来研究电弧结构。电弧的赤道相位传播约为0.46 km s-1,并且在1800到2030年的磁性当地时间的黄昏电离层中观察到。光学数据分析表明,Alfvén波的频率为1.63 mHz,方位波数为m〜-20(负号表示向西传播)。通过电弧结构内部的DMSP F16可以观察到与0.5至0.8μAm-2的场取向电流相关的V型电子反转。除了与电弧相关的电子密度增强之外,ESR数据还显示了电弧之间的离子温度升高,这与电场增强和电离层加热效应一致。 ESR和DMSP F16数据的组合表明,波能通过电离层焦耳和/或离子摩擦加热以及粒子加速进入电离层而耗散,产生了极光显示。除传播方向和尺度大小外,精细尺度的结构化还表明,极光特征是场线共振的特征,它是由与从磁尾向地球传播的压缩快速模式波的相互作用驱动的。

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