首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >First observations of the midlatitude evening anomaly using Super Dual Auroral Radar Network (SuperDARN) radars
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First observations of the midlatitude evening anomaly using Super Dual Auroral Radar Network (SuperDARN) radars

机译:首先观察中间纬度的晚上使用超级双极光雷达网络异常

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Under geomagnetically quiet conditions, the daytime midlatitude ionosphere is mainly influenced by solar radiation: typically, electron densities in the ionosphere peak around solar noon. Previous observations from the Millstone Hill incoherent scatter radar (ISR) have evidenced the presence of evening electron densities higher than daytime densities during the summer. The recent development of midlatitude Super Dual Auroral Radar Network (SuperDARN) radars over North America and Japan has revealed an evening enhancement in ground backscatter during the summer. SuperDARN observations are compared to data from the Millstone Hill ISR, confirming a direct relation between the observed evening enhancements in electron densities and ground backscatter. Statistics over a year of data from the Blackstone radar show that the enhancement occurs during sunset for a few hours from April to September. The evening enhancement observed by both SuperDARN and the Millstone Hill ISR is shown to be related to recent satellite observations reporting an enhancement in electron densities over a wide range of longitudes in the Northern Hemisphere midlatitude sector during summer time. Finally, global results from the International Reference Ionosphere (IRI) and the horizontal wind model (HWM07) are presented in relation with previously published experimental results and proposed mechanisms of the evening enhancement, namely, thermospheric horizontal winds and geomagnetic field configuration. It is shown that the IRI captures the features of the evening enhancement as observed by SuperDARN radars and satellites.
机译:在眼睛安静的情况下,白天中间纬度电离层是主要的受到太阳辐射的影响:一般来说,电离层电子密度的峰值中午太阳。磨石山非相干散射雷达(ISR)证明晚上电子的存在吗密度高于白天期间密度这个夏天。超级双极光雷达网络(SuperDARN)雷达在北美和日本一个晚上在地面后向散射增强在夏天。磨石希尔ISR的数据相比,确认直接观察到的关系晚上在电子密度和增强地面后向散射。来自黑石雷达显示的数据增强发生在日落几个小时从4月到9月。观察到SuperDARN和磨石ISR与显示最近的卫星观察报告电子的增强密度在一个广泛的经度北半球观测部门中夏天的时间。国际参考电离层(IRI)和提出了横向风模型(HWM07)与先前发表的实验结果,提出机制的晚上增强,即thermospheric水平风和地磁场配置。表明IRI捕获的特性晚上增强由SuperDARN观测到的雷达和卫星。

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