First Metis Detection of the Helium D3 Line Polarization in a Large Eruptive Prominence

Author:

Heinzel PetrORCID,Jejčič SonjaORCID,Štěpán JiříORCID,Susino RobertoORCID,Andretta VincenzoORCID,Russano GiulianaORCID,Fineschi Silvano,Romoli MarcoORCID,Bemporad AlessandroORCID,Berlicki ArkadiuszORCID,Burtovoi Aleksandr,Da Deppo Vania,De Leo Yara,Grimani CatiaORCID,Jerse Giovanna,Landini Federico,Naletto GiampieroORCID,Nicolini GianalfredoORCID,Pancrazzi MaurizioORCID,del Pino Alemán TanausúORCID,Sasso ClementinaORCID,Spadaro DanieleORCID,Stangalini Marco,Telloni DanieleORCID,Teriaca LucaORCID,Uslenghi Michela,Arévalo Andrés VicenteORCID

Abstract

Abstract Metis on board Solar Orbiter is the space coronagraph developed by an Italian–German–Czech consortium. It is capable of observing solar corona and various coronal structures in the visible-light (VL) and UV (hydrogen Lyα) channels simultaneously for the first time. Here we present observations of a large eruptive prominence on 2021 April 25–26, in the VL, taken during the mission cruise phase, and demonstrate that apart from the broadband continuum emission, which is due to the Thomson scattering on prominence electrons, we detect a significant radiation in the neutral-helium D3 line (587.6 nm), which lies within the Metis VL passband. We show how the prominence looks like in Stokes I, Q, and U. We consider two extreme cases of the prominence magnetic field, and we separate the Stokes I and Q signals pertinent to Thomson scattering and to the D3 line. The degree of linear polarization of the D3 line (both Q and U) indicates the presence of the prominence magnetic field; hence Metis can serve as a magnetograph for eruptive prominences located high in the corona.

Funder

Czech Science Foundation

Publisher

American Astronomical Society

Subject

Space and Planetary Science,Astronomy and Astrophysics

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