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The Response of Geomagnetic Daily Variation and Ionospheric Currents to the Annular Solar Eclipse on 21 June 2020

机译:地磁日变的反应电离层电流环形日食2020年6月21日

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In this study, we examined the response of geomagnetic daily variation and ionospheric currents to the solar annular eclipse that passed through China at 10:00–17:30 LT on 21 June 2020. We utilized geomagnetic field data obtained from the Geomagnetic Network Center of China, Institute of Geophysics, China Earthquake Administration and International Real-time Magnetic Observatory Network, which extend from middle latitudes to equatorial regions in China and surrounding areas. It is found that the eclipse obscuration reduces the intensity of geomagnetic daily variation at most stations as compared with the 5-quietday average. The response of geomagnetic daily variation to the solar eclipse depends on local time and latitude. In most shadowed areas of the eclipse, there is a reduction of northward (southward) component of the meridional magnetic daily field (ΔX) below (above) ~30° magnetic latitudes. The solar eclipse can also induce a decrease of the zonal magnetic field variation (ΔY). Meanwhile, we observed that the solar eclipse reduces the intensity of vertical geomagnetic component (ΔZ) at the stations around the early afternoon aside the eclipse totality. In general, these geomagnetic responses imply that the solar eclipse can reduce the ionospheric solar quiet (Sq) current system. These ionospheric currents and ground geomagnetic field disturbances during the solar eclipse are also verified by a global physical model. The simulation demonstrates that the ionospheric currents in the southern hemisphere, where the solar eclipse does not cover, also have a weak response. Overall, the ionospheric current disturbance induced by the solar eclipse shows a counter-Sq pattern.
机译:在这项研究中,我们审查的反应地磁日变和电离层电流通过太阳能日环食2020年6月21日通过中国10:00-17:30 LT。我们利用地磁场数据获得中国的地磁网络中心,中国地震地球物理研究所国际管理和实时磁观测网络,扩展中纬度地区在中国赤道地区及周边地区。eclipse昏暗的强度降低地磁日变站最多相比之下,5-quietday平均水平。响应的地磁日变日食取决于当地时间和纬度。大多数eclipse的阴影区域,有一个减少向北(南)的组成部分经向每日磁场(ΔX)(上图)~ 30°磁纬度。eclipse还可以诱发带状的减少磁场变化(ΔY)。观察日食减少了地磁垂直分量强度(ΔZ)在下午早些时候站在一边eclipse整体。地磁响应意味着太阳eclipse可以减少电离层太阳能安静当前系统(平方)。和地面磁场干扰日食也验证了全球物理模型。南方的电离层电流半球,日食没有封面,也有一个微弱的回应。电离层电流引起的干扰日食counter-Sq图样。

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