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Magnetospheric Time History in Storm-Time Magnetic Flux Dynamics

  • University of Michigan, Ann Arbor

Research output: Contribution to journalArticlepeer-review

4 Citations (Scopus)

Abstract

Magnetospheric magnetic flux dynamics is quantified in 29 geomagnetic storms between 2015 and 2019, using near-equatorial Van Allen Probe, GOES, and Magnetospheric Multiscale satellites. For the first time, concurrent, multi-probe observations are utilized to preserve magnetospheric time history, defined as the state of the magnetosphere leading up to an observation. It is revealed that, relative to pre-storm conditions, (a) during the storm sudden commencement (SSC), magnetic flux uniformly increases ΔΨ = +15% throughout the magnetosphere, except in the nightside inner magnetosphere where ΔΨ = −30%, and (b) during storm main and recovery phases, ΔΨ = −30% and −15%, respectively, in the nightside magnetosphere, at radial distances 5 ≤ r [RE] < 8. It is found that a symmetric ring current is likely formed in the nightside, early in the storm process (localized during SSC), which then broadens during the main phase, before weakening during the recovery phase. The current system on the dayside shows a distinct dawn-dusk asymmetry.

Original languageEnglish
Article numbere2023JA031832
JournalJournal of Geophysical Research: Space Physics
Volume128
Issue number9
DOIs
Publication statusPublished - 1 Sept 2023

Keywords

  • geomagnetic storm
  • interplanetary coronal mass ejection
  • magnetic flux
  • magnetospheric current systems
  • space weather
  • storm sudden commencement

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