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Low-Latitude Pi2 Waves according to Observations on SWARM Satellites and Ground Stations

机译:低纬度PI2浪潮根据群卫星和地站的观察

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We considered wave disturbances of the Pi2 type geomagnetic field (periods of 1-2 min) recorded simultaneously by magnetometers at low-latitude stations in Africa and on low-orbit SWARM satellites both during the beginning of a substorm and in non-substorm periods. At night, Pi2 waves in the upper ionosphere and on Earth are almost identical in amplitude and in phase. These waves on the satellite mainly manifest themselves in longitudinal (along the geomagnetic field) and radial magnetic components. A comparison of the observational results with the model of the interaction of MHD waves with the ionosphere-atmosphere-Earth system shows that night low-latitude Pi2 signals are generated by magnetospheric fast magnetosonic waves propagating to the Earth through the opacity region. The results of analytical estimates and numerical simulations are consistent with the properties of Pi2 signals recorded in the upper ionosphere and on Earth.
机译:我们考虑了非洲低纬度站和低轨道卫星在代级的低纬度站和低轨道卫星的磁力计同时记录的PI2型地磁场(1-2分钟)的波浪扰动。晚上,上电离层和地球上的PI2波在振幅和阶段几乎相同。这些波在卫星上主要在纵向(沿着地磁场)和径向磁性部件中表示自己。观察结果与MHD波与电离层 - 气氛 - 地球系统的相互作用模型的比较表明,夜间低纬度PI2信号通过透明度区域传播到地球的磁体快速磁性波产生。分析估计和数值模拟的结果与上电离层和地球上记录的PI2信号的性质一致。

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  • 来源
    《Cosmic research》 |2020年第1期|1-11|共11页
  • 作者单位

    Russian Acad Sci Schmidt Inst Phys Earth Moscow 123995 Russia;

    Russian Acad Sci Geophys Ctr Moscow 119296 Russia;

    Russian Acad Sci Schmidt Inst Phys Earth Moscow 123995 Russia;

    South African Natl Space Agcy ZA-0087 Pretoria Gauteng South Africa;

    Boston Coll Boston MA USA;

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