First Solar Orbiter observation of a dark halo in the solar atmosphere

Fuente: arXiv
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Auteurs principaux: Lezzi, Serena Maria, Long, David M., Andretta, Vincenzo, Baker, Deborah, Dolliou, Antoine, Murabito, Mariarita, Parenti, Susanna, Prado, Natalia Zambrana
Format: Preprint
Publié: 2024
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author Lezzi, Serena Maria
Long, David M.
Andretta, Vincenzo
Baker, Deborah
Dolliou, Antoine
Murabito, Mariarita
Parenti, Susanna
Prado, Natalia Zambrana
author_facet Lezzi, Serena Maria
Long, David M.
Andretta, Vincenzo
Baker, Deborah
Dolliou, Antoine
Murabito, Mariarita
Parenti, Susanna
Prado, Natalia Zambrana
contents Solar active regions (ARs) are often surrounded by dark large areas of reduced emission compared to the quiet Sun, observed at various wavelengths corresponding to chromosphere, transition region (TR) and corona, and known as Dark Halos (DHs). DHs have been insufficiently studied, and the mechanisms behind their darker emission remain unclear. This study aims to investigate for the first time the fine structure of a DH observed by the EUV High Resolution Imager (HRI$_{EUV}$) onboard the ESA's Solar Orbiter (SO) mission and its appearance in the TR. We utilized the extensive 1-hour dataset from SO on 19 March 2022, which includes high-resolution observations of NOAA 12967 and part of the surrounding DH. We analyzed the dynamics of the HRI$_{EUV}$ DH fine structure and its appearance in the HRI$_{Lyα}$ image and the Spectral Imaging of the Coronal Environment (SPICE) Ly$β$, C III, N VI, O VI and Ne VIII lines, which sample the TR in the logT (K) $\sim$ 4.0 - 5.8 range. This analysis was complemented with a simultaneous B$_{LOS}$ magnetogram taken by the High Resolution Telescope (HRT). We report the presence of a peculiar fine structure which is not observed in the quiet Sun, characterized by combined bright EUV bundles and dark regions, arranged and interconnected in such a way that they cannot be clearly separated. They form a spatial continuum extending approximately radially from the AR core, suggesting a deep connection between the DH and the AR. Additionally, we find that the bright EUV bundles are observed in all the SPICE TR lines and the HRI$_{Lyα}$ band and present photospheric B$_{LOS}$ footprints in the HRT magnetogram. This spatial correlation indicates that the origin of the 174 Å DH may lie in the low atmosphere, i.e. photosphere/chromosphere.
format Preprint
id arxiv_https___arxiv_org_abs_2408_17172
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle First Solar Orbiter observation of a dark halo in the solar atmosphere
Lezzi, Serena Maria
Long, David M.
Andretta, Vincenzo
Baker, Deborah
Dolliou, Antoine
Murabito, Mariarita
Parenti, Susanna
Prado, Natalia Zambrana
Solar and Stellar Astrophysics
Solar active regions (ARs) are often surrounded by dark large areas of reduced emission compared to the quiet Sun, observed at various wavelengths corresponding to chromosphere, transition region (TR) and corona, and known as Dark Halos (DHs). DHs have been insufficiently studied, and the mechanisms behind their darker emission remain unclear. This study aims to investigate for the first time the fine structure of a DH observed by the EUV High Resolution Imager (HRI$_{EUV}$) onboard the ESA's Solar Orbiter (SO) mission and its appearance in the TR. We utilized the extensive 1-hour dataset from SO on 19 March 2022, which includes high-resolution observations of NOAA 12967 and part of the surrounding DH. We analyzed the dynamics of the HRI$_{EUV}$ DH fine structure and its appearance in the HRI$_{Lyα}$ image and the Spectral Imaging of the Coronal Environment (SPICE) Ly$β$, C III, N VI, O VI and Ne VIII lines, which sample the TR in the logT (K) $\sim$ 4.0 - 5.8 range. This analysis was complemented with a simultaneous B$_{LOS}$ magnetogram taken by the High Resolution Telescope (HRT). We report the presence of a peculiar fine structure which is not observed in the quiet Sun, characterized by combined bright EUV bundles and dark regions, arranged and interconnected in such a way that they cannot be clearly separated. They form a spatial continuum extending approximately radially from the AR core, suggesting a deep connection between the DH and the AR. Additionally, we find that the bright EUV bundles are observed in all the SPICE TR lines and the HRI$_{Lyα}$ band and present photospheric B$_{LOS}$ footprints in the HRT magnetogram. This spatial correlation indicates that the origin of the 174 Å DH may lie in the low atmosphere, i.e. photosphere/chromosphere.
title First Solar Orbiter observation of a dark halo in the solar atmosphere
topic Solar and Stellar Astrophysics
url https://arxiv.org/abs/2408.17172