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The UT Variation of the Polar Ionosphere Based on COSMIC Observations

机译:极地电离层基于的UT变异宇宙的观察

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Mean polar electron content (mPEC) is used to analyze the polar ionosphere in both the Antarctic and Arctic. The mPEC is calculated over the polar region covering geographic latitudes higher than 60° from the global distributed vertical total electron contents based on electron density profiles observed by Constellation Observing System for Meteorology, Ionosphere, and Climate (COSMIC). Using this parameter, the universal time (UT) variation of the polar ionosphere is quantitatively characterized. This UT variation exists an opposite phase (i.e., a 12-hr phase difference) between them. The mPEC standard deviation (SD) in the Antarctic is larger in summer and autumn (being 1.37 and 0.78 TECu, respectively) and smaller in winter (0.29 TECu) and spring (0.61 TECu). The SD in the Arctic, however, is the largest in winter (0.14 TECu). In other seasons, the SD is less than 0.1 TECu. (being 0.07 TECu in spring, 0.05 TECu in summer, and 0.08 TECu in autumn, respectively). We use SD over the mean value to describe relative intensity of mPEC variations. This relative intensity is larger in winter for both Antarctic and Arctic regions. The UT variation in intensity is much stronger in the Antarctic than in the Arctic. These characteristics are attributed to the fact that the separation of the geomagnetic pole and geographic pole is dihedral and the angle is larger in the Antarctic. The larger angle causes more electrons transported into the polar region when the geomagnetic pole is on the dayside and fewer electrons transported into the polar region when the geomagnetic pole is on the nightside.
机译:意思是极地(mPEC)是用于电子内容分析了极地的电离层南极和北极。极地地区覆盖地理纬度高于60°的全球分布基于垂直总电子内容电子密度剖面观察到星座为气象观测系统,电离层和气候(宇宙)。参数,世界时(UT)的变化极地电离层是定量的为特征。反相(即12-hr相位差)他们之间。南极是更大的在夏季和秋季(分别是1.37和0.78特)小冬天特(0.29)和弹簧(0.61特)。特在冬季最大(0.14)。SD小于0.1为一例。春天,夏天特0.05和0.08特秋天,分别)。值来描述mPEC的相对强度变化。冬天的南极和北极地区。但变化的强度更强比在北极南极。特点是归因于这一事实地磁北极和分离地理极点二面角角度更大的在南极。更多的电子运输到极地地区当地磁北极的光面和更少的电子运输到极地地区当地磁极阴面。

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