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利用地基和星载技术对2015年6月22 - 23日地磁暴期间赤道和低纬度地区的电动力学及电离层扰动的研究

Study of the Equatorial and Low-Latitude Electrodynamic and Ionospheric Disturbances During the 22-23 June 2015 Geomagnetic Storm Using Ground-Based and Spaceborne Techniques.

作者信息

Astafyeva E, Zakharenkova I, Hozumi K, Alken P, Coïsson P, Hairston M R, Coley W R

机构信息

Institut de Physique du Globe de Paris, Paris Sorbonne Cité University Paris Diderot, UMR CNRS 7154 Paris France.

West Department of IZMIRAN Kaliningrad Russia.

出版信息

J Geophys Res Space Phys. 2018 Mar;123(3):2424-2440. doi: 10.1002/2017JA024981. Epub 2018 Mar 30.

Abstract

We use a set of ground-based instruments (Global Positioning System receivers, ionosondes, magnetometers) along with data of multiple satellite missions (Swarm, C/NOFS, DMSP, GUVI) to analyze the equatorial and low-latitude electrodynamic and ionospheric disturbances caused by the geomagnetic storm of 22-23 June 2015, which is the second largest storm in the current solar cycle. Our results show that at the beginning of the storm, the equatorial electrojet (EEJ) and the equatorial zonal electric fields were largely impacted by the prompt penetration electric fields (PPEF). The PPEF were first directed eastward and caused significant ionospheric uplift and positive ionospheric storm on the dayside, and downward drift on the nightside. Furthermore, about 45 min after the storm commencement, the interplanetary magnetic field (IMF) Bz component turned northward, leading to the EEJ changing sign to westward, and to overall decrease of the vertical total electron content (VTEC) and electron density on the dayside. At the end of the main phase of the storm, and with the second long-term IMF Bz southward turn, we observed several oscillations of the EEJ, which led us to conclude that at this stage of the storm, the disturbance dynamo effect was already in effect, competing with the PPEF and reducing it. Our analysis showed no significant upward or downward plasma motion during this period of time; however, the electron density and the VTEC drastically increased on the dayside (over the Asian region). We show that this second positive storm was largely influenced by the disturbed thermospheric conditions.

摘要

我们使用一套地面仪器(全球定位系统接收器、电离层探测仪、磁力仪)以及多个卫星任务(Swarm、C/NOFS、DMSP、GUVI)的数据,来分析2015年6月22 - 23日地磁暴引发的赤道和低纬度电动力学及电离层扰动,此次地磁暴是当前太阳活动周期中的第二大风暴。我们的结果表明,在风暴开始时,赤道电急流(EEJ)和赤道纬向电场受到迅速穿透电场(PPEF)的很大影响。PPEF最初向东,在白天导致显著的电离层抬升和正电离层风暴,在夜间导致向下漂移。此外,在风暴开始约45分钟后,行星际磁场(IMF)的Bz分量转向北方,导致EEJ的符号变为向西,并导致白天垂直总电子含量(VTEC)和电子密度总体下降。在风暴主相结束时,随着IMF的Bz第二次长期向南转向,我们观测到EEJ的几次振荡,这使我们得出结论,在风暴的这个阶段,扰动发电机效应已经起作用,与PPEF相互竞争并使其减弱。我们的分析表明,在此期间没有明显的等离子体向上或向下运动;然而,白天(亚洲地区上空)的电子密度和VTEC急剧增加。我们表明,这次第二次正风暴在很大程度上受到扰动热层条件的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e9a0/5993243/6d9b44e888cc/JGRA-123-2424-g001.jpg

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