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首页> 外文期刊>Annales Geophysicae >Simultaneous optical, CUTLASS HF radar, and FAST spacecraft observations: signatures of boundary layer processes in the cusp
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Simultaneous optical, CUTLASS HF radar, and FAST spacecraft observations: signatures of boundary layer processes in the cusp

机译:同时进行光学,CUTLASS HF雷达和FAST航天器观测:尖端处边界层过程的特征

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摘要

In this paper we discuss counterstreaming electrons, electric field turbulence, HF radar spectral width enhancements, and field-aligned currents in the southward IMF cusp region. Electric field and particle observations from the FAST spacecraft are compared with CUTLASS Finland spectral width enhancements and ground-based optical data from Svalbard during a meridional crossing of the cusp. The observed 630 nm rayed arc (Type-1 cusp aurora) is associated with stepped cusp ion signatures. Simultaneous counter-streaming low-energy electrons on open magnetic field lines lead us to propose that such electrons may be an important source for rayed red arcs through pitch angle scattering in collisions with the upper atmosphere. The observed particle precipitation and electric field turbulence are found to be nearly collocated with the equatorward edge of the optical cusp, in a region where CUTLASS Finland also observed enhanced spectral width. The electric field turbulence is observed to extend far poleward of the optical cusp. The broad-band electric field turbulence corresponds to spatial scale lengths down to 5 m. Therefore, we suggest that electric field irregularities are directly responsible for the formation of HF radar backscatter targets and may also explain the observed wide spectra. FAST also encountered two narrow highly structured field-aligned current pairs flowing near the edges of cusp ion steps.
机译:在本文中,我们讨论了向南的IMF尖端区域中的电子逆流,电场湍流,HF雷达频谱宽度增强和场对准电流。将FAST航天器的电场和粒子观测结果与CUTLASS Finland光谱宽度增强结果和来自斯瓦尔巴特群岛的地面光学数据进行了比较。观察到的630 nm射线弧(1型尖峰极光)与阶梯状尖峰离子特征相关。在开放磁场线上同时逆流的低能电子使我们提出这样的电子可能是与高层大气碰撞时通过俯仰角散射而发出红色电弧的重要来源。在芬兰CUTLASS观察到光谱宽度增加的区域,发现观察到的粒子沉淀和电场湍流几乎与光学尖端的赤道边缘并列。观察到电场湍流向光学尖端延伸得很远。宽带电场湍流对应于低至5 m的空间尺度长度。因此,我们认为电场的不规则性直接导致了高频雷达反向散射目标的形成,也可能解释了观察到的宽光谱。 FAST还遇到了两个窄的高度结构化的场对准电流对,这些电流对在尖端离子台阶的边缘附近流动。

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