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首页> 外文期刊>Annales Geophysicae >Determining the boundaries of the auroral oval from CHAMP field-aligned current signatures - Part 1
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Determining the boundaries of the auroral oval from CHAMP field-aligned current signatures - Part 1

机译:从CHAMP场对齐电流特征确定极光椭圆的边界-第1部分

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摘要

In this paper we present the first statistical study on auroral oval boundaries derived from small- and medium-scale field-aligned currents (FACs, < 150 km). The dynamics of both the equatorward and poleward boundaries is deduced from 10 years of CHAMP (CHAllenging Minisatellite Pay-load) magnetic field data (August 2000-August 2010). The approach for detecting the boundaries from FACs works well under dark conditions. For a given activity level the boundaries form well-defined ellipses around the magnetic pole. The latitudes of the equatorward and poleward boundaries both depend, but in different ways, on magnetic activity. With increasing magnetic activity the equatorward boundary expands everywhere, while the poleward boundary shows on average no dependence on activity around midnight, which seems to be stationary at a value of about 72° Mlat. Functional relations between the latitudes of the boundaries and different magnetic activity indices have been tested. Best results for a linear dependence are derived for both boundaries with the dayside merging electric field. The other indices, like the auroral electrojet (AE) and disturbance storm time (Dst) index, also provide good linear relations but with some caveats. Toward high activity a saturation of equator-wards expansion seems to set in. The locations of the auroral boundaries are practically independent of the level of the solar EUV flux and show no dependence on season.
机译:在本文中,我们对来自中小规模的场对准流(FAC,<150 km)的极光椭圆形边界进行了首次统计研究。从CHAMP(具有挑战性的微型卫星有效载荷)磁场数据的10年(2000年8月至2010年8月)推导出赤道和极向边界的动力学。从FAC检测边界的方法在黑暗条件下效果很好。对于给定的活动水平,边界在磁极周围形成定义明确的椭圆。赤道和极向边界的纬度都取决于磁活动,但以不同的方式。随着磁活动的增加,赤道边界向各处扩展,而磁极边界平均显示不依赖于午夜时分的活动,午夜时分似乎是静止的,约为72°Mlat。已经测试了边界纬度和不同磁活动指数之间的功能关系。对于日间合并电场的两个边界,得出线性相关性的最佳结果。其他指数,如极光电喷(AE)和扰动风暴时间(Dst)指数,也具有良好的线性关系,但有一些警告。朝着高活动方向看,赤道向扩张似乎饱和。极光边界的位置实际上与太阳EUV通量的水平无关,并且不依赖于季节。

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  • 来源
    《Annales Geophysicae 》 |2014年第6期| 609-622| 共14页
  • 作者单位

    Helmholtz Centre Potsdam, GFZ German Research Centre for Geosciences, Telegrafenberg, 14473 Potsdam, Germany ,Department of Space Physics, College of Electronic Information, Wuhan University, 430079 Wuhan, China;

    Helmholtz Centre Potsdam, GFZ German Research Centre for Geosciences, Telegrafenberg, 14473 Potsdam, Germany;

    Department of Space Physics, College of Electronic Information, Wuhan University, 430079 Wuhan, China;

    Tromso Geophysical Observatory, Faculty of Science and Technology, University of Tromso, Tromso, Norway;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ionosphere (auroral ionosphere); magnetospheric physics (current systems; magnetosphere-ionosphere interactions);

    机译:电离层(极光电离层);磁层物理学(当前系统;磁层-电离层相互作用);

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