Spatial distributions of EUV brightenings in the quiet-Sun
arXiv:2411.00467 · doi:10.1051/0004-6361/202346886
Abstract
The identification of large numbers of localised transient EUV brightenings, with small spatial scales, in the quiet-Sun corona has been one of the key early results from Solar Orbiter. However, much is still unknown about these events. Here, we aim to better understand EUV brightenings by investigating their spatial distributions, specifically whether they occur co-spatial with specific line-of-sight magnetic field topologies in the photospheric network. EUV brightenings are detected using an automated algorithm applied to a high-cadence (3 s) dataset sampled over ~30 min on 8 March 2022 by the Extreme Ultraviolet Imager's 17.4 nm EUV High Resolution Imager. Data from the Solar Dynamics Observatory's Helioseismic and Magnetic Imager and Atmospheric Imaging Assembly are used to provide context about the line-of-sight magnetic field and for alignment purposes. We found a total of 5064 EUV brightenings within this dataset that are directly comparable to events reported previously in the literature. These events occurred within around 0.015-0.020 % of pixels for any given frame. We compared eight different thresholds to split the EUV brightenings into four different categories related to the line-of-sight magnetic field. Using our preferred threshold, we found that 627 EUV brightenings (12.4 %) occurred co-spatial with Strong Bipolar configurations and 967 EUV brightenings (19.1 %) occurred in Weak Field regions. Fewer than 10 % of EUV brightenings occurred co-spatial with Unipolar line-of-sight magnetic field no matter what threshold was used. Of the 627 Strong Bipolar EUV Brightenings, 54 were found to occur co-spatial with cancellation whilst 57 occurred co-spatial with emergence. EUV brightenings preferentially occur co-spatial with the strong line-of-sight magnetic field in the photospheric network. They do not, though, predominantly occur co-spatial with (cancelling) bi-poles.
14 pages, 8 figures, accepted in A&A
References in corpus (16)
- The Solar Orbiter mission -- Science overview
- Hot Explosions in the Cool Atmosphere of the Sun
- Extension of the MURaM radiative MHD code for coronal simulations
- The Solar Orbiter Science Activity Plan: translating solar and heliospheric physics questions into action
- Transient small-scale brightenings in the quiet solar corona: a model for campfires observed with Solar Orbiter
- Ellerman bombs and UV bursts: transient events in chromospheric current sheets
- Internetwork chromospheric bright grains observed with IRIS
- The magnetic drivers of campfires seen by the Polarimetric and Helioseismic Imager (PHI) on Solar Orbiter
- IRIS Burst Spectra Co-Spatial To A Quiet-Sun Ellerman-Like Brightening
- First Perihelion of EUI on the Solar Orbiter mission
- Temperature of Solar Orbiter/EUI quiet Sun small scale brightenings: evidence for a cooler component
- Miniature loops in the solar corona
- Occurrence and Statistics of IRIS Bursts
- EUV brightenings in the quiet-Sun: Signatures in spectral and imaging data from the Interface Region Imaging Spectrograph
- Spectroscopic evidence of cool plasma in quiet Sun HRIEUV small scale brightenings
- Automatic detection of small-scale EUV brightenings observed by the Solar Orbiter/EUI
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- Quasi-periodic pulsations in extreme-ultraviolet brightenings
- The nature of small scale EUV solar brightenings investigated as impulsive heating of short loops in 1D hydrododynamics simulations
- Kinetic collisionless model of the solar transition region and corona with spatially intermittent heating
- Accessing the fine temporal scale of EUV brightenings and their quasi-periodic pulsations: 1 second cadence observations by Solar Orbiter/EUI