首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Large-scale traveling ionospheric disturbances observed by GPS dTEC maps over North and South America on Saint Patrick's Day storm in 2015
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Large-scale traveling ionospheric disturbances observed by GPS dTEC maps over North and South America on Saint Patrick's Day storm in 2015

机译:大规模旅游电离层扰动观察到GPS dTEC地图在北部和南部美国2015年在圣巴特里克节风暴

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Large-scale traveling ionospheric disturbances (LSTIDs) were detected in both Northern and Southern Hemispheres over American sector during the geomagnetic storm on 17-18 March 2015, also known as the Saint Patrick's Day storm. Detrended total electronic content (dTEC) maps were made using dense GNSS network receiver data. The retrieved LSTIDs showed wavelengths of 1000 to 2000 km, phase velocity of ~300-1000 m/s, and period of ~30-50 min. Among them, three couples of LSTIDs were observed propagating from the polar regions to low latitudes. Two wave events observed in daytime showed the propagation direction of southwest in the Northern Hemisphere and northeast in the Southern Hemisphere, which means an asymmetric propagation against the geographic equator. The other wave event observed during the evening hour showed symmetric propagation direction, i.e., southwest in the Northern Hemisphere and northwest in the Southern Hemisphere, whereas their wavelength and phase velocity are significantly different between NH and SH. These observations indicate that the two groups of LSTID have different propagation conditions from polar to low-latitude regions. The observed asymmetric/symmetric propagation forms suggest asymmetric/symmetric auroral current activity between the northern and southern polar regions.
机译:大规模旅游电离层扰动(LSTIDs)在北部和检测在美国部门在南半球2015年3月17 - 18地磁风暴被称为圣巴特里克节风暴。总电子含量(dTEC)地图使用密集GNSS接收机的数据网络。检索LSTIDs显示波长的1000年2000公里,相速度的~ 300 - 1000 m / s段~ 30 - 50分钟。其中,三对夫妇观察LSTIDs传播的极地低纬度地区。在白天显示传播北半球的西南方向和东北在南半球是指对不对称传播地理赤道。在晚上时间显示对称的传播方向,即西南北半球南部和西北半球,而它们的波长和阶段速度NH之间是明显不同的和SH。这些观察结果表明,两个LSTID组有不同的传播条件从极地到低纬度地区。观察到的不对称/对称传播形式显示不对称/对称的极光北部和之间的当前活动南部极地。

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