Ionosphere Responses Over Asian-Australian and American Sectors to the 10–12 May 2024 Superstorm

IF 2.6 2区 地球科学 Q2 ASTRONOMY & ASTROPHYSICS Journal of Geophysical Research: Space Physics Pub Date : 2024-12-17 DOI:10.1029/2024JA033071
Ruilong Zhang, Libo Liu, Yuyan Yang, Wenbo Li, Xiukuan Zhao, Akimasa Yoshikawa, M. Arslan Tariq, Yiding Chen, Huijun Le
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Abstract

This work analyzed the ionospheric disturbances over the Asian-Australian and American sectors during the superstorm that started from ∼17 UT on 10 May 2024. During 17–22.5 UT, the equatorial ΔH recorded the positive and negative disturbances in American and Asian sectors due to the penetration electric fields (PEFs). The Total Electron Content (TEC) at American was enhanced for ∼9 hr within 50°S–40°N, while TEC at Asian-Australian decreased for ∼3 hr within 10°S–25°N. The equatorward disturbance winds promptly propagated to middle and low latitudes after 1 hr of the storm onset in Asian sector and impeded the negative TEC induced by the westward PEFs. In the recovery phase, the repeated elevations of hmF2s were observed in two sectors under the multiple PEFs resulting from the interplanetary magnetic fields Bz south-north turning before 12 UT on 11 May. After that, in the American sector the westward disturbance dynamo electric fields were remarkable, and induced the negative storm effects at low latitudes; while in Asian-Australian sector, the TEC presented the negative storm in the Northern Hemisphere and positive storm in the Southern Hemisphere. In Asian sector, the middle negative TEC storm became positive after 14–24 UT on 11 May and then switched to negative, which firstly occurred in the eastern regions and spread to westward and equatorward. These longitude gradients might be caused by disturbance winds and O/N2. Besides, the positive storm reinforced in conjugated Australian sector when the positive TEC was observed in Asian sector, indicating the possible contribution of the reinforced plasmasphere refilling.

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2024 年 5 月 10-12 日超级风暴对亚洲-澳大利亚和美国地区上空电离层的影响
本研究分析了从2024年5月10日~ 17世界时开始的超级风暴期间亚洲-澳大利亚和美国部分的电离层扰动。在17-22.5 UT期间,赤道ΔH记录了美洲和亚洲扇区由于穿透电场(pef)的正扰动和负扰动。总电子含量(TEC)在50°S-40°N内提高了~ 9小时,而亚洲-澳大利亚的TEC在10°S-25°N内降低了~ 3小时。在亚洲扇区风暴发生1小时后,赤道扰动风迅速传播到中低纬度地区,阻碍了西向PEFs引起的负TEC。在恢复阶段,在5月11日12 UT之前,在行星际磁场Bz南向北转引起的多个PEFs下,在两个扇区观测到hmF2s的重复上升。此后,美国扇区西扰发电机电场显著,诱发低纬度负风暴效应;而在亚洲-澳大利亚区域,TEC在北半球表现为负风暴,在南半球表现为正风暴。在亚洲扇区,5月11日14-24 UT后,中部负TEC风暴转为正,随后转为负,首先出现在东部地区,向西和赤道方向扩散。这些经度梯度可能是由扰动风和O/N2引起的。此外,在亚洲区观测到正TEC时,共轭澳大利亚区正风暴增强,表明等离子层再填充增强可能有贡献。
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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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