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Wave and plasma measurements and GPS diagnostics of the main ionospheric trough as a hybrid method used for Space Weather purposes

机译:主要电离层波谷的波和等离子体测量以及GPS诊断,这是一种用于空间天气目的的混合方法

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摘要

The region of the main ionospheric trough is a unique region of the ionosphere, where different types of waves and instabilities can be generated. This region of the ionosphere acts like a lens, focusing a variety of indicators from the equator of plasmapause and local ionospheric plasma. This paper reports the results of monitoring the mid-latitude trough structure, dynamics and wave activity. For these purposes, the data gathered by the currently-operating DEMETER satellite and past diagnostics located on IK-19, Apex, and MAGION-3 spacecraft, as well as TEC measurements were used. A global-time varying picture of the ionospheric trough was reconstructed using the sequence of wave spectra registered and plasma measurements in the top-side ionosphere. The authors present the wave activity from ULF frequency band to the HF frequency detected inside the trough region and discuss its properties during geomagnetic disturbances. It is thought that broadband emissions are correlated with low frequency radiation, which is excited by the wave-particle interaction in the equatorial plasmapause and moves to the ionosphere along the geomagnetic field line. In the ionosphere, the suprathermal electrons can interact with these electrostatic waves and excite electron acoustic waves or HF longitudinal plasma waves. Furthermore, the electron density trough can provide useful data on the magnetosphere ionosphere dynamics and morphology and, in consequence, can be used for Space Weather purposes.
机译:电离层主槽的区域是电离层的独特区域,可在其中产生不同类型的波和不稳定性。电离层的这个区域就像一个透镜,聚焦等离子赤道和局部电离层等离子体的赤道仪。本文报告了监测中纬度槽结构,动力学和波浪活动的结果。为此,使用了由目前运行的DEMETER卫星收集的数据以及IK-19,Apex和MAGION-3航天器上的过去诊断信息以及TEC测量值。使用顶侧电离层中记录的波谱序列和等离子体测量结果重建了电离层低谷的全球时变图片。作者介绍了从ULF频段到波谷区域内检测到的HF频率的波活动,并讨论了其在地磁干扰期间的特性。人们认为宽带发射与低频辐射有关,低频辐射被赤道等离子体暂停中的波粒相互作用所激发,并沿着地磁场线移动到电离层。在电离层中,超热电子可以与这些静电波相互作用,并激发电子声波或HF纵向等离子体波。此外,电子密度槽可提供有关磁层电离层动力学和形态的有用数据,因此可用于太空天气目的。

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