Ionosphere and magnetosphere dynamicsSolar and Space Plasma DynamicsEarthquake Detection and Analysis

R. Hajra, B. Tsurutani, A. M. S. Franco, Quanming Lu, Aimin Du, G. Lakhina, San Lu, Xinliang Gao, E. Echer

2026.3.2Journal of Space Weather and Space Climate

DOI: 10.1051/swsc/2026007

Abstract

Birkeland field-aligned currents (FACs) are associated with solar wind-magnetosphere energy coupling leading to substorms/convection events. FAC intensity enhancements have been studied during geomagnetic storms driven by interplanetary coronal mass ejections and corotating interaction regions. Here we present an in-depth analysis of long-term FAC variation, strongly modulated by solar wind high-speed streams (HSSs) emanated from solar coronal holes. Variations of both dayside and nightside FAC intensities during June 2016 through June 2017 are characterized by prominent periodicities of ~14, ~26, and ~29 days (in descending order of amplitude), highly correlated to empirically estimated rate of magnetic flux opening at the dayside magnetopause. The periodicities represent the ~27-day solar rotation period and its harmonic, resulting from combined impacts of recurring HSSs emanated from multiple long-lived coronal holes, corotating with the Sun. Modulation of the long-term FAC intensity variation by recurring HSSs is confirmed by statistical regression, cross-wavelet and coherence analyses. These results may be useful in developing FAC prediction models.

Citation format

HAJRA, R., et al. Field-aligned currents are strongly modulated by corotating solar wind high-speed streams. Journal of Space Weather and Space Climate, 2026, 16: 18.