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Modes of high-latitude auroral conductance variability derived from DMSP energetic electron precipitation observations: Empirical orthogonal function analysis

机译:模式的高纬度地区极光电导变异性来自DMSP高能电子降水观测:经验正交的功能分析

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We provide the first ever characterization of the primary modes of ionospheric Hall and Pedersen conductance variability as empirical orthogonal functions (EOFs). These are derived from six satellite years of Defense Meteorological Satellite Program (DMSP) particle data acquired during the rise of solar cycles 22 and 24. The 60 million DMSP spectra were each processed through the Global Airlglow Model. Ours is the first large-scale analysis of ionospheric conductances completely free of assumption of the incident electron energy spectra. We show that the mean patterns and first four EOFs capture ~50.1 and 52.9% of the total Pedersen and Hall conductance variabilities, respectively. The mean patterns and first EOFs are consistent with typical diffuse auroral oval structures and quiet time strengthening/weakening of the mean pattern. The second and third EOFs show major disturbance features of magnetosphere-ionosphere (MI) interactions: geomagnetically induced auroral zone expansion in EOF2 and the auroral substorm current wedge in EOF3. The fourth EOFs suggest diminished conductance associated with ionospheric substorm recovery mode.We identify the most important modes of ionospheric conductance variability. Our results will allow improved modeling of the background error covariance needed for ionospheric assimilative procedures and improved understanding of MI coupling processes.
机译:我们提供的第一个特征电离层霍尔和他的主要模式经验正交电导的变化函数(eof)。国防气象卫星年卫星计划(DMSP)粒子数据获得在太阳周期22和24的崛起。百万DMSP光谱都通过处理全球Airlglow模型。大规模的分析电离层电导完全免费的假设的事件电子的能量谱。模式和前四个eof捕捉~ 50.1彼得森总数的52.9%和霍尔电导分别可变性。和第一eof符合典型扩散极光椭圆结构和安静的时间加强/削弱的模式。第二个和第三个eof显示主要的干扰的特性magnetosphere-ionosphere (MI)交互:眼睛诱导极光区域扩张EOF2和极光亚暴当前在EOF3楔。减少电导与电离层亚暴恢复模式。电离层的最重要的模式电导的变化。改进的背景建模误差电离层同化所需的协方差MI过程和改进的理解耦合过程。

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