科研速览 · Science Skim继续刷下去 · Keep skimming →
◆ The Astrophysical Journal2026-04-06· Physics

Quasiperiodic Fast-mode Wave Trains Associated with the 2015 June 22 M6.5 Flare in NOAA Active Region 12371: Observations and 3D Magnetohydrodynamic Modeling

Tongjiang Wang, Wei Liu, Leon Ofman, Xudong Sun, Meng Jin

原始摘要(英文原文)· Original abstract
Abstract Quasiperiodic fast-propagating (QFP) wave trains are a distinctive form of magnetohydrodynamic (MHD) disturbance frequently observed in the solar corona. Yet their excitation mechanism and propagation characteristics are not well understood. In this study, we investigate a well-observed QFP wave event associated with an M6.5-class flare and coronal mass ejection that occurred in NOAA Active Region 12371 on 2015 June 22, by combining multiwavelength observations from the Solar Dynamics Observatory/Atmospheric Imaging Assembly (AIA) and Helioseismic and Magnetic Imager with data-inspired 3D MHD simulations. The QFP wave trains propagating at high speeds of 1140−1760 km s −1 are detected in the AIA 171 Å channel, following global extreme-ultraviolet (EUV) wave fronts visible at 171 and 193 Å traveling at considerably lower speeds of 300−510 km s −1 . Wavelet analysis reveals consistent 2–4 minutes periodicities in both the QFPs and flare quasiperiodic pulsations observed in UV/EUV and hard-X-ray emissions, suggesting a common origin likely linked to intermittent magnetic reconnection. Guided by these observations, we construct realistic 3D MHD models incorporating dense fan-loop structures and periodic drivers applied at different locations. The simulations reproduce the key characteristics of the observed wave trains. Comparison between cases with and without a coronal background (nonloop plasma emission) indicates that coronal density structuring significantly modifies the detected wave amplitudes and propagation patterns. Our results highlight the importance of realistic coronal magnetic configurations in modeling QFP dynamics and suggest that their observed association with fan loops in AIA 171 Å may represent a temperature-dependent visibility effect rather than a genuine confinement of the waves.
读原文 · Read the paper ↗

AI 追问PRO

登录后使用 AI 追问

讨论区

登录后参与讨论

相关论文 · Related

Quasiperiodic Fast-mode Wave Trains Associated with the 2015 June 22 M6.5 Flare in NOAA Active Region 12371: Observations and 3D Magnetohydrodynamic Modeling — 科研速览 Science Skim