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Both solar wind-magnetosphere coupling and ring current intensity control of the size of the auroral oval

机译:太阳风-磁层耦合和环流强度均控制极光椭圆的大小

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摘要

Two years of observations of the Earth's aurorae by the Imager for Magnetopause-to-Aurora Global Exploration (IMAGE) spacecraft are investigated to determine the factors controlling the size of the ionospheric polar cap and hence the latitude of the auroral oval. Regression analysis of the size of the auroral oval with respect to solar wind-magnetosphere coupling and the intensity of the Earth's ring current reveals that both play a role in determining the response of the aurora to geomagnetic storms. Specifically, we demonstrate that by considering the SW-M coupling and ring current intensity together, the correlation with the radius of the auroral oval is significantly better than if the two factors are considered individually. The results are discussed in terms of the solar windmagnetosphere interaction and internal feedback of the ring current on circulation of plasma within the magnetosphere.
机译:磁极顶空至极光全球探索(IMAGE)航天器的成像仪对地球极光的两年观测进行了研究,以确定控制电离层极帽尺寸以及极光椭圆纬度的因素。对极光椭圆形的大小相对于太阳风-磁层耦合以及地球环流强度的回归分析表明,两者都在确定极光对地磁风暴的响应中起作用。具体来说,我们证明,通过同时考虑SW-M耦合和环电流强度,与极光椭圆半径的相关性明显好于单独考虑这两个因素的情况。将根据太阳风磁层相互作用和环流对磁层内等离子体循环的内部电流内部反馈来讨论结果。

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