Ultra-high resolution observations of plasmoid-mediated magnetic reconnection in the deep solar atmosphere
L. Rouppe van der Voort, M. van Noort, J. de la Cruz Rodriguez

TL;DR
This study uses ultra-high resolution spectroscopic observations to investigate plasmoid-mediated magnetic reconnection in the deep solar atmosphere, revealing dynamic plasmoid activity associated with Ellerman bombs.
Contribution
It demonstrates the capability of the MiHI integral field spectrograph to resolve small-scale plasmoid structures and their dynamics during magnetic reconnection events in the solar atmosphere.
Findings
Detection of small-scale plasmoid-like blobs with sizes 0.1"-0.4"
Blobs moving at velocities 14-77 km/s
Support for plasmoid-mediated magnetic reconnection in Ellerman bombs
Abstract
Magnetic reconnection in the deep solar atmosphere can give rise to enhanced emission in the Balmer hydrogen lines, a phenomenon referred to as Ellerman bombs. To effectively trace magnetic reconnection below the canopy of chromospheric fibrils, we analyzed unique spectroscopic observations of Ellerman bombs in the H-alpha line. We analyzed a 10 min dataset of a young emerging active region observed with the prototype of the Microlensed Hyperspectral Imager (MiHI) at the Swedish 1-m Solar Telescope (SST). The MiHI instrument is an integral field spectrograph that is capable of achieving simultaneous ultra-high resolution in the spatial, temporal and spectral domains. With the combination of the SST adaptive optics system and image restoration techniques, MiHI can deliver diffraction limited observations if the atmospheric seeing conditions allow. The dataset samples the H-alpha line…
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Taxonomy
TopicsSolar and Space Plasma Dynamics · Stellar, planetary, and galactic studies · Astro and Planetary Science
