超级亚风暴是亚风暴吗?2024年5月地磁暴期间的极端夜侧极光电喷流活动

IF 2.9 2区 地球科学 Q2 ASTRONOMY & ASTROPHYSICS
Ying Zou, Ohtani Shin, Jesper W. Gjerloev, Brian J. Anderson, Colin L. Waters, Chih-Ping Wang, Jun Liang, Larry L. Lyons, Asti Bhatt
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引用次数: 0

摘要

地球电离层电流的增强对系统和技术产生不利影响,极端增强的一个例子是超级亚暴。尽管有这个名字,但超级亚暴是否是亚暴仍然是一个悬而未决的问题,因为研究表明,与亚暴不同,超级亚暴有时会影响所有当地时间,包括白天。这次壮观的2024年5月风暴包含了两次超级亚风暴的特征,它们在时间上先后发生,具有相似的大小和持续时间,我们通过检查极光电喷流的形态,磁层中相应的扰动和太阳风驱动条件来探索它们的本质。结果表明,这两个事件表现出明显不同的特征。第一次事件的特点是局部电喷射增强,随后纬度和当地时间迅速扩大。极光观测显示极光向极地扩展,地球同步观测显示等离子体层增厚、磁场双极化和高能粒子注入。第二次事件的特点是电喷流在宽纬度和当地时间的瞬时增强。极光并没有扩大,而是同时在天空中变亮。雷达和近地轨道观测显示电离层电场增强。因此,第一个事件是次暴,而第二个事件是由太阳风压增加驱动的一般磁层对流增强。这些结果表明,所谓的超级亚暴具有不止一种类型的驱动因素,并且磁尾的内部不稳定性和太阳风的外部驱动在驱动极端极光电喷活动方面同样重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Are Supersubstorms Substorms? Extreme Nightside Auroral Electrojet Activities During the May 2024 Geomagnetic Storm

Enhancement of currents in Earth's ionosphere adversely impacts systems and technologies, and one example of extreme enhancement is supersubstorms. Despite the name, whether a supersubstorm is a substorm remains an open question, because studies suggest that unlike substorms, supersubstorms sometimes affect all local times including the dayside. The spectacular May 2024 storm contains signatures of two supersubstorms that occurred successively in time with similar magnitude and duration, and we explore the nature of them by examining the morphology of the auroral electrojet, the corresponding disturbances in the magnetosphere, and the solar wind driving conditions. The results show that the two events exhibit distinctly different features. The first event was characterized by a locally intensified electrojet followed by a rapid expansion in latitude and local time. Auroral observations showed poleward expansion of auroras (or aurorae), and geosynchronous observations showed thickening of the plasma sheet, magnetic field dipolarization, and energetic particle injections. The second event was characterized by an instantaneous intensification of the electrojet over broad latitude and local time. Auroras did not expand but brightened simultaneously across the sky. Radar and LEO observations showed enhancement of the ionospheric electric field. Therefore, the first event is a substorm, whereas the second event is enhancement of general magnetospheric convection driven by a solar wind pressure increase. These results illustrate that the so-called supersubstorms have more than one type of driver, and that internal instability in the magnetotail and external driving of the solar wind are equally important in driving extreme auroral electrojet activity.

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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
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