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首页> 外文期刊>Radio Science >High-latitude topside ionospheric vertical electron density profile changes in response to large magnetic storms
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High-latitude topside ionospheric vertical electron density profile changes in response to large magnetic storms

机译:高纬度上层电离层垂直电子密度剖面响应大磁暴而变化

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摘要

Large magnetic-storm-induced changes were detected in high-latitude topside vertical electron density profiles Ne(h) in a database of profiles and digital topside ionograms, from the International Satellites for Ionospheric Studies (ISIS) program, that enabled Ne(h) profiles to be obtained in nearly the same region of space before, during, and after a major magnetic storm (Dst < –100 nT). Storms where Ne(h) profiles were available in the high-latitude Northern Hemisphere had better coverage of solar wind parameters than storms with available Ne(h) profiles in the high-latitude Southern Hemisphere. Large Ne(h) changes were observed during all storms, with enhancements and depletions sometimes near a factor of 10 and 0.1, respectively, but with substantial differences in the responses in the two hemispheres. Large spatial and/or temporal Ne(h) changes were often observed during Dst minimum and during the storm recovery phase. The storm-induced Ne(h) changes were the most pronounced and consistent in the Northern Hemisphere in that large enhancements were observed during winter nighttime and large depletions during winter and spring daytime. The limited available cases suggested that these Northern Hemisphere enhancements increased with increases of the time-shifted solar wind velocity v, magnetic field B, and with more negative values of the B components except for the highest common altitude (1100 km) of the profiles. There was also some evidence suggesting that the Northern Hemisphere depletions were related to changes in the solar wind parameters. Southern Hemisphere storm-induced enhancements and depletions were typically considerably less with depletions observed during summer nighttime conditions and enhancements during summer daytime and fall nighttime conditions.
机译:在国际电离层研究卫星(ISIS)计划的剖面和数字化顶面离子图数据库中,在高纬度顶面垂直电子密度剖面Ne(h)中检测到大的磁暴诱发变化,该变化使Ne(h)在大磁暴之前,期间和之后(Dst <–100 nT)在几乎相同的空间区域中获得的剖面。与在高纬度南半球具有Ne(h)轮廓的风暴相比,在高纬度北半球具有Ne(h)轮廓的风暴具有更好的太阳风参数覆盖范围。在所有暴风雨期间都观察到较大的Ne(h)变化,有时增强和耗竭分别接近10和0.1倍,但在两个半球的响应上却有很大差异。通常在Dst最小值和风暴恢复阶段会观察到较大的空间和/或时间Ne(h)变化。风暴引起的Ne(h)变化在北半球最为明显和一致,因为在冬季夜间观察到了较大的增强,而在冬季和春季白天观察到了大的消耗。有限的可用案例表明,北半球的这些增强随着时移太阳风速v,磁场B的增加而增加,并且B分量的负值更多,除了剖面的最高共同高度(1100 km)。也有证据表明北半球的枯竭与太阳风参数的变化有关。南半球风暴诱发的增强和消减通常要少得多,在夏季夜间条件下观测到损耗,而在夏季白天和秋季夜间条件下观测到损耗增强。

著录项

  • 来源
    《Radio Science》 |2016年第5期|524-537|共14页
  • 作者单位

    Geospace Physics Laboratory, Code 673, Heliophysics Science Division, NASA/Goddard Space Flight Center, Greenbelt, Maryland, USA;

    Geospace Physics Laboratory, Code 673, Heliophysics Science Division, NASA/Goddard Space Flight Center, Greenbelt, Maryland, USA;

    Geospace Physics Laboratory, Code 673, Heliophysics Science Division, CUA/Goddard Space Flight Center, Greenbelt, Maryland, USA;

    Institute of Atmospheric Physics, Czech Academy of Sciences, Prague, Czech Republic;

    Space Weather Laboratory, Code 674, Heliophysics Science Division, UMBC/GPHI/Goddard Space Flight Center, Greenbelt, Maryland, USA;

    Heliospheric Physics Laboratory, Code 672, Heliophysics Science Division, GMU/SWL/Goddard Space Flight Center, Greenbelt, Maryland, USA;

    Geospace Physics Laboratory, Code 673, Heliophysics Science Division, NASA/Goddard Space Flight Center, Greenbelt, Maryland, USA;

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

    Storms; Magnetic resonance imaging; Magnetosphere; Ionosphere; Satellites; Satellite broadcasting;

    机译:风暴;磁共振成像;磁层;电离层;卫星;卫星广播;

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