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The response of equatorial electrojet, vertical plasma drift, and thermospheric zonal wind to enhanced solar wind input

机译:赤道电喷,垂直等离子漂移和热层纬向风对增强的太阳风输入的响应

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摘要

In this study we used observations from the CHAMP and ROCSAT-1 satellites to investigate the solar wind effects on the equatorial electrojet (EEJ), vertical plasma drift, and thermospheric zonal wind. We show that an abrupt increase in solar wind input has a significant effect on the low-latitude ionosphere-thermosphere system, which can last for more than 24 h. The disturbance EEJ and zonal wind are mainly westward for all local times and show most prominent responses during 07–12 and 00–06 magnetic local time (MLT), respectively. The equatorial disturbance electric field is mainly eastward at night (most prominent for 00–05 MLT) and westward at daytime with small amplitudes. In this study we show for the first time that the penetration electric field is little dependent on longitude at both the day and night sides, while the disturbance zonal wind is quite different at different longitude sectors, implying a significant longitudinal dependence of the ionospheric disturbance dynamo. Our result also indicates that the F region equatorial zonal electric field reacts faster than E region dynamo, to the enhanced solar wind input.
机译:在这项研究中,我们使用了来自CHAMP和ROCSAT-1卫星的观测结果来研究太阳风对赤道电喷(EEJ),垂直等离子漂移和热层纬向风的影响。我们显示,太阳风输入的突然增加对低纬度电离层-热层系统具有重大影响,该持续时间可能超过24小时。 EEJ和纬向风的扰动在所有当地时间都主要向西,并且分别在07-12和00-06磁性当地时间(MLT)表现出最突出的响应。赤道扰动电场主要在晚上向东(对于00-05 MLT最为明显)和在白天向西,幅度较小。在这项研究中,我们首次表明,穿透电场在白天和晚上都几乎不依赖于经度,而扰动带风在不同的经度扇区上却有很大不同,这意味着电离层扰动发电机在纵向上具有显着的依赖性。 。我们的结果还表明,F区赤道纬向电场对E发电机产生的反应要比E区发电机快。

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