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Interplanetary Causes and Impacts of the 2024 May Superstorm on the Geosphere: An Overview

Authors :
Rajkumar Hajra
Bruce Tsatnam Tsurutani
Gurbax Singh Lakhina
Quanming Lu
Aimin Du
Source :
The Astrophysical Journal, Vol 974, Iss 2, p 264 (2024)
Publication Year :
2024
Publisher :
IOP Publishing, 2024.

Abstract

The recent superstorm of 2024 May 10–11 is the second largest geomagnetic storm in the space age and the only one that has simultaneous interplanetary data (there were no interplanetary data for the 1989 March storm). The May superstorm was characterized by a sudden impulse (SI ^+ ) amplitude of +88 nT, followed by a three-step storm main-phase development, which had a total duration of ∼9 hr. The cause of the first storm main phase with a peak SYM-H intensity of −183 nT was a fast-forward interplanetary shock (magnetosonic Mach number M _ms ∼ 7.2) and an interplanetary sheath with a southward interplanetary magnetic field component B _s of ∼40 nT. The cause of the second storm's main phase with an SYM-H intensity of −354 nT was a deepening of the sheath B _s to ∼43 nT. A magnetosonic wave ( M _ms ∼ 0.6) compressed the sheath to a high magnetic field strength of ∼71 nT. Intensified B _s of ∼48 nT were the cause of the third and most intense storm main phase, with an SYM-H intensity of −518 nT. Three magnetic cloud events with B _s fields of ∼25–40 nT occurred in the storm recovery phase, lengthening the recovery to ∼2.8 days. At geosynchronous orbit, ∼76 keV to ∼1.5 MeV electrons exhibited ∼1–3 orders of magnitude flux decreases following the shock/sheath impingement onto the magnetosphere. The cosmic-ray decreases at Dome C, Antarctica (effective vertical cutoff rigidity

Details

Language :
English
ISSN :
15384357
Volume :
974
Issue :
2
Database :
Directory of Open Access Journals
Journal :
The Astrophysical Journal
Publication Type :
Academic Journal
Accession number :
edsdoj.7c6398e6723c4a6b8195cf27ebec4223
Document Type :
article
Full Text :
https://doi.org/10.3847/1538-4357/ad7462