The extremely strong non-neutralized electric currents of the unique solar active region NOAA 13664
Ioannis Kontogiannis (Leibniz-Institut f\"ur Astrophysik Potsdam (AIP), Germany)

TL;DR
This study investigates the development of extreme magnetic complexity in NOAA 13664 through photospheric electric current analysis, revealing the strongest non-neutralized electric currents observed, which are linked to intense solar activity and space weather impacts.
Contribution
It introduces a novel detailed analysis of non-neutralized electric currents in NOAA 13664, demonstrating their unprecedented strength and dynamic evolution during active region development.
Findings
Total unsigned non-neutralized electric currents reached 5.95×10^13 A.
Electric current injection rates peaked at 1.5×10^13 A/day.
Region exhibited the strongest currents observed in Solar Cycle 24 and 25.
Abstract
In May 2024, the extremely complex active region National Oceanic and Atmospheric Administration (NOAA) 13664 produced the strongest geomagnetic storm since 2003. The aim of this study is to explore the development of the extreme magnetic complexity of NOAA 13664 in terms of its photospheric electric current. The non-neutralized electric current is derived from photospheric vector magnetograms, provided by the Helioseismic and Magnetic Imaged onboard the Solar Dynamics Observatory. The calculation method is based on image processing, thresholding and error analysis. The spatial and temporal evolution of the non-neutralized electric current of the region as well as its constituent sub-regions is examined. For context, a comparison with other complex, flare-prolific active regions is provided. Active region NOAA 13664 was formed by the emergence and interaction of three sub-regions, two…
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