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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Solar Illumination Dependence of the Auroral Electrojet Intensity: Interplay Between the Solar Zenith Angle and Dipole Tilt
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Solar Illumination Dependence of the Auroral Electrojet Intensity: Interplay Between the Solar Zenith Angle and Dipole Tilt

机译:太阳能电气喷射强度的太阳能照明依赖性:太阳能天顶角和偶极倾斜之间的相互作用

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The present study investigates the dependence of the local auroral electrojet (AEJ) intensity on solar illumination by statistically examining northward geomagnetic disturbances in the auroral zone in terms of the solar zenith angle χ. It is found that on the dayside, both westward and eastward electrojets (WEJ and EEJ) are more intense for smaller χ, suggesting that the solar extreme ultraviolet-induced conductance is the dominant factor for the AEJ intensity. On the nightside, in contrast, the χ dependence of the AEJ intensity, if sorted solely by the magnetic local time, apparently depends on the station longitude and hemisphere. However, if additionally sorted by the dipole tilt angle ψ, a consistent pattern emerges. That is, although χ and ψ are correlated, the solar zenith angle and dipole tilt angle have physically different effects on the AEJ intensity. The nightside AEJ, especially the WEJ, tends to be more intense for smaller |ψ|. Moreover, whereas the WEJ is statistically more intense when the ionosphere is dark, the EEJ is more intense when it is sunlit. The preference of the WEJ for the dark ionosphere prevails widely in magnetic local time from premidnight to dawn, and therefore, it cannot be attributed to the previously proposed processes of the preferred monoenergetic or broadband auroral precipitation in the dark ionosphere. Instead, it may be explained, at least morphologically, in terms of the conductance enhancement due to the diffuse auroral precipitation, which is also prevalent from premidnight to dawn and is more intense in the dark hemisphere.
机译:本研究通过在太阳能天顶角度χ中统计地检查极光区的北方地磁干扰来研究局部极光电气喷射(AEJ)强度对太阳能照明的依赖性。结果发现,在杜斯,向西和东部电气进射(WEJ和EEJ)更加强烈,表明太阳极端紫外引起的电导是AEJ强度的主导因素。在夜间,相反,AEJ强度的依赖性(如果仅被磁性当地时间分类),显然都取决于车站经度和半球。但是,如果另外由偶极倾斜角度排序,则出现一致的模式。也就是说,尽管χ和ψ是相关的,但太阳能天顶角和偶极倾斜角对AEJ强度具有物理不同的影响。夜间AEJ,尤其是Wej,往往更加激烈|ψ|。而且,当电离层很暗时,WEJ在统计学上更强烈,而EEJ在阳光照射时更加激烈。 Wej对黑暗电离层的偏好在优先于黎明的磁性当地时间中占盛行,因此,不能归因于在黑暗电离层中优选的单体植物或宽带极光沉淀的先前提出的方法。相反,在由于弥漫性极光沉淀由于弥漫性极光沉淀的导致增强方面,可以在对曙光中普遍存在,并且在黑暗的半球中更加强烈地,这也可以在导致的增强方面解释。

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