在THEMIS航天器探测到的磁尾重联事件中与磁层快速流爆发相关的局部水平地磁场变化观测

IF 2.9 2区 地球科学 Q2 ASTRONOMY & ASTROPHYSICS Journal of Geophysical Research: Space Physics Pub Date : 2025-01-18 DOI:10.1029/2024JA032651
Chigomezyo M. Ngwira, Yukitoshi Nishimura, James M. Weygand, Mark J. Engebretson, Antti Pulkkinnen, Peter W. Schuck
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引用次数: 0

摘要

2015年12月20日,三次亚暴期间事件时间历史和宏观尺度相互作用(THEMIS)航天器在一次大型地磁风暴的早期主阶段探测到一次夜侧磁尾重联事件。这些航天器(P5、P4和P3)的足迹位于加拿大吉拉姆地面磁力计站附近的北美上空。空间和地面的多点观测可以检查地面扰动的时空特征以及磁层和电离层中相关的物理驱动因素。研究表明,Gillam地面磁力计站点观测到的水平地磁场d B h ${\mathrm{B}}_{h}$ /dt局域化(100-300 km)特征是由三艘THEMIS航天器探测到的夜侧磁尾重联事件驱动的孤立亚暴在该站点附近发生引起的都位于等离子体层中心附近。利用球面初等电流系统技术对地面磁强计测量得到的等效电离层电流和电流幅值图进行了仔细检查,结果表明定位位置大致位于向上和向下的场向电流系统之间,这与其他早期研究结果一致。该事件代表了首次报道的地面d B h ${\mathrm{B}}_{h}$ /dt定位,该定位与大地磁扰动(GMD)开始阶段的夜侧磁尾快速流爆发和重联事件直接相关。
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Observations of Localized Horizontal Geomagnetic Field Variations Associated With a Magnetospheric Fast Flow Burst During a Magnetotail Reconnection Event Detected by the THEMIS Spacecraft

On 20 December 2015, three Time History of Events and Macroscale Interactions during Substorms (THEMIS) spacecraft detected a nightside magnetotail reconnection event in the early main phase of a major geomagnetic storm. The spacecraft (P5, P4, and P3) had their footprints located over North America near the Gillam ground magnetometer station in Canada. Multipoint observations, both in space and from the ground, allow for an examination of the spatiotemporal characteristics of the disturbance on the ground and the associated physical drivers in the magnetosphere and ionosphere. This study shows that the horizontal geomagnetic field d B h ${\mathrm{B}}_{h}$ /dt localized (on the scale of 100–300 km) feature observed at Gillam ground magnetometer site was caused by an isolated substorm onset near that station driven by a nightside magnetotail reconnection event detected by three THEMIS spacecraft that were located near the central plasma sheet. A close inspection of equivalent ionospheric current and current amplitude maps derived from ground magnetometer measurements using the spherical elementary current system technique indicates that the location of the localization lies roughly between the upward and downward field aligned current system, which is consistent with other earlier studies. This event represents the first reported observation of ground d B h ${\mathrm{B}}_{h}$ /dt localization that is directly linked to nightside magnetotail fast flow bursts and reconnection event during the onset phase of a major Geomagnetic disturbance (GMD).

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来源期刊
Journal of Geophysical Research: Space Physics
Journal of Geophysical Research: Space Physics Earth and Planetary Sciences-Geophysics
CiteScore
5.30
自引率
35.70%
发文量
570
期刊最新文献
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