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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >An Empirical Orthogonal Function Reanalysis of the Northern Polar External and Induced Magnetic Field During Solar Cycle 23
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An Empirical Orthogonal Function Reanalysis of the Northern Polar External and Induced Magnetic Field During Solar Cycle 23

机译:太阳系23期间北极外部外部外部磁场的经验正交功能再分析

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摘要

We apply the method of data-interpolating empirical orthogonal functions (EOFs) to ground-based magnetic vector data from the SuperMAG archive to produce a series of month length reanalyses of the surface external and induced magnetic field (SEIMF) in 110,000 km~2 equal-area bins over the entire northern polar region at 5 min cadence over solar cycle 23, from 1997.0 to 2009.0. Each EOF reanalysis also decomposes the measured SEIMF variation into a hierarchy of spatiotemporal patterns which are ordered by their contribution to the monthly magnetic field variance. We find that the leading EOF patterns can each be (subjectively) interpreted as well-known SEIMF systems or their equivalent current systems. The relationship of the equivalent currents to the true current flow is not investigated. We track the leading SEIMF or equivalent current systems of similar type by intermonthly spatial correlation and apply graph theory to (objectively) group their appearance and relative importance throughout a solar cycle, revealing seasonal and solar cycle variation. In this way, we identify the spatiotemporal patterns that maximally contribute to SEIMF variability over a solar cycle. We propose this combination of EOF and graph theory as a powerful method for objectively defining and investigating the structure and variability of the SEIMF or their equivalent ionospheric currents for use in both geomagnetism and space weather applications. It is demonstrated here on solar cycle 23 but is extendable to any epoch with sufficient data coverage.
机译:我们将数据插值的经验正交功能(EOF)应用于来自SuperMag档案的地基磁矢量数据,以产生一系列外部和诱导磁场(SEIMF)的一个月长度的Reanalyses,在110,000 km〜2中相等 - 在整个北极地区域的垃圾箱在5分钟的光线上,从1997.0到2009.0到2009.0。每个EOF重新分析也将测量的SEIMF变化分解成时空图案的层级,其通过它们对每月磁场方差的贡献来排序。我们发现领先的EOF模式可以(主观地)被解释为众所周知的SEIMF系统或其等效电流系统。不研究等效电流与真正流动的关系。我们通过近期空间相关性跟踪类似类型的领先的SEIMF或同等电流系统,并将图论应用于(客观地)群体在太阳循环中的外观和相对重要性,揭示了季节性和太阳循环变化。通过这种方式,我们确定了在太阳循环上最大地促进了SeiMF可变性的时空模式。我们提出了EOF和图表理论的这种组合作为客观地定义和研究SEIMF或其等效电离层电流的强大方法,以用于地磁和空间天气应用。此处在太阳循环23上展示,但可扩展到任何具有足够数据覆盖的时期。

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