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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Spatial distribution of average vorticity in the high-latitude ionosphere and its variation with interplanetary magnetic field direction and season
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Spatial distribution of average vorticity in the high-latitude ionosphere and its variation with interplanetary magnetic field direction and season

机译:平均涡度的空间分布高纬度地区电离层及其变化和行星际磁场方向季节

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摘要

We present a technique to measure the magnetic field-aligned vorticity of mesoscale plasma flows in the F region ionosphere using line-of-sight velocity measurements made by the Super Dual Auroral Radar Network (SuperDARN). Vorticity is often used as a proxy for magnetic field-aligned current (FAC) intensity in the ionosphere but also provides information about turbulent processes in the ionosphere and magnetosphere. Using 6 years (2000-2005 inclusive) of vorticity measurements made by six SuperDARN radars in the Northern Hemisphere, we have compiled, for the first time, maps of average vorticity across the northern polar ionosphere. These maps have been subdivided according to different seasonal and interplanetary magnetic field (IMF) conditions. The variations in the morphology of the vorticity maps with IMF direction match very closely those seen in maps of average FAC intensity (determined using different methods and instrumentation), suggesting that vorticity is a good proxy for FAC in an averaged sense. The variations in the morphology of the vorticity maps with season show differences from those seen in the FAC maps, illustrating that ionospheric conductance plays a major role in determining the differences between measurements of vorticity and FAC.
机译:我们提出一种技术来测量磁field-aligned中尺度等离子体流的涡度电离层F地区使用视线速度测量由超级双极光雷达网络(SuperDARN)。通常用作磁field-aligned代理当前在电离层(FAC)强度还提供了有关的信息流程在电离层和磁层。使用6年(2000 - 2005年的包容性)涡度测量由六SuperDARN雷达北半球,我们收集了,第一次,平均涡度的地图北方极地电离层。根据不同的季节和细分行星际磁场(IMF)的条件。涡度的变化形态地图与国际货币基金组织(IMF)方向密切吻合在地图的平均FAC强度(确定使用不同的方法和仪器),FAC表明涡度是一个很好的代表在一个平均的意义。形态与季节的涡度地图显示从这些差异中看到FAC地图,说明电离层电导扮演重要的角色在决定之间的差异测量涡度和前沿空中管制官。

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