On the three-dimensional relation between the coronal dimming, erupting filament and CME. Case study of the 28 October 2021 X1.0 event
Galina Chikunova, Tatiana Podladchikova, Karin Dissauer, Astrid M., Veronig, Mateja Dumbovi\'c, Manuela Temmer, Ewan C.M. Dickson

TL;DR
This study explores the three-dimensional relationships between coronal dimming, filament eruption, and CME propagation during a solar event, revealing how dimming morphology reflects CME direction and filament dynamics.
Contribution
It introduces a method to estimate the dominant dimming direction and links it to filament and CME propagation using multi-viewpoint observations and 3D reconstruction.
Findings
Dimming initially expands radially then shifts southeast.
Filament reaches ~250 km/s at ~180 Mm height.
CME and filament directions differ by about 50 degrees.
Abstract
We investigate the relation between the spatiotemporal evolution of the dimming region and the dominant direction of the filament eruption and CME propagation for the 28 October 2021 X1.0 flare/CME event observed from multiple viewpoints by Solar Orbiter, STEREO-A, SDO, and SOHO. We propose a method to estimate the dominant dimming direction by tracking its area evolution and emphasize its accurate estimation by calculating the surface area of a sphere for each pixel. To determine the early flux rope propagation direction, we perform 3D reconstruction of the CME via graduated cylindrical shell modeling (GCS) and tie-pointing of the filament. The dimming initially expands radially and later shifts southeast. The orthogonal projections of the reconstructed height evolution of the erupting filament onto the solar surface are located in the sector of the dominant dimming growth, while the…
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Taxonomy
TopicsSolar and Space Plasma Dynamics · Ionosphere and magnetosphere dynamics
