Partial ionization of plasma in solar prominences

Author:

Heinzel Petr12ORCID,Gunár Stanislav1,Jejčič Sonja13

Affiliation:

1. Astronomical Institute of the Czech Academy of Sciences, Ondřejov 25165, The Czech Republic

2. Center of Excellence ‘Solar and Stellar Activity’, University of Wroclaw, Wroclaw, Poland

3. Faculty of Education and Faculty of Mathematics and Physics, University of Ljubljana, Ljubljana, Slovenia

Abstract

The plasma in cool cores of solar prominences is partially ionized and its ionization degree, in general, depends on the actual kinetic temperature and density of the plasma and the ions considered. However, we demonstrate that under typical prominence conditions, the dominant mechanism contributing to partial ionization is photoionization by radiation diffusing through the plasma. This mechanism strongly depends on the radiation illuminating prominences from the surrounding solar atmosphere. The understanding of the partial ionization of prominence plasma thus requires a complex solution of the non-LTE radiative-transfer problem. In this paper, we discuss the ionization of hydrogen, helium and some other important species. We also demonstrate the role of non-equilibrium ionization. This article is part of the theme issue ‘Partially ionized plasma of the solar atmosphere: recent advances and future pathways’.

Funder

Czech Science Foundation

Publisher

The Royal Society

Reference31 articles.

1. Heinzel P. 2015 Radiative transfer in solar prominences. In Solar prominences (eds J-C Vial O Engvold) p. 415103. Cham: Springer (Astrophysics and Space Science Library).

2. An Introduction to Astrophysical Non-equilibrium Quantitative Spectroscopic Analysis;Hubeny I,2015

3. Multilevel NLTE radiative transfer in isolated atmospheric structures: implementation of the MALI-technique;Heinzel P;Astron. Astrophys.,1995

4. Two-dimensional multilevel radiative transfer with standard partial frequency redistribution in isolated solar atmospheric structures;Paletou F;Astron. Astrophys.,1995

5. An accelerated lambda iteration method for multilevel radiative transfer;Rybicki GB;Astron. Astrophys.,1991

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2. Partially ionized plasma of the solar atmosphere: recent advances and future pathways;Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences;2024-04-25

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