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In-flight validation of Metis Visible-light Polarimeter Coronagraph on board Solar Orbiter

Authors :
Liberatore, A.
Fineschi, S.
Casti, M.
Capobianco, G.
Abbo, L.
Andretta, V.
Da Deppo, V.
Fabi, M.
Frassati, F.
Jerse, G.
Landini, F.
Moses, D.
Naletto, G.
Nicolini, G.
Pancrazzi, M.
Romoli, M.
Russano, G.
Sasso, C.
Spadaro, D.
Stangalini, M.
Susino, R.
Telloni, D.
Teriaca, L.
Uslenghi, M.
Source :
A&A 672, A14 (2023)
Publication Year :
2023

Abstract

Context. The Metis coronagraph is one of the remote-sensing instruments of the ESA/NASA Solar Orbiter mission. Metis is aimed at the study of the solar atmosphere and solar wind by simultaneously acquiring images of the solar corona at two different wavelengths; visible-light (VL) within a band ranging from 580 nm to 640 nm, and in the HI Ly-alpha 121.6 +/- 10 nm ultraviolet (UV) light. The visible-light channel includes a polarimeter with electro-optically modulating Liquid Crystal Variable Retarders (LCVRs) to measure the linearly polarized brightness of the K-corona to derive the electron density. Aims. In this paper, we present the first in-flight validation results of the Metis polarimetric channel together with a comparison to the on-ground calibrations. It is the validation of the first use in deep space (with hard radiation environment) of an electro-optical device: a liquid crystal-based polarimeter. Methods. We used the orientation of the K-corona's linear polarization vector during the spacecraft roll maneuvers for the in-flight calibration. Results. The first in-flight validation of the Metis coronagraph on-board Solar Orbiter shows a good agreement with the on-ground measurements. It confirms the expected visible-light channel polarimetric performance. A final comparison between the first pB obtained by Metis with the polarized brightness (pB) obtained by the space-based coronagraph LASCO and the ground-based coronagraph KCor shows the consistency of the Metis calibrated results.<br />Comment: 8 pages, 13 figures, 3 tables, paper

Details

Database :
arXiv
Journal :
A&A 672, A14 (2023)
Publication Type :
Report
Accession number :
edsarx.2302.07308
Document Type :
Working Paper
Full Text :
https://doi.org/10.1051/0004-6361/202244069