Heinzel Petr, Gunár Stanislav, Jejčič Sonja
Astronomical Institute of the Czech Academy of Sciences, Ondřejov 25165, The Czech Republic.
Center of Excellence 'Solar and Stellar Activity', University of Wroclaw, Wroclaw, Poland.
Philos Trans A Math Phys Eng Sci. 2024 Jun 9;382(2272):20230221. doi: 10.1098/rsta.2023.0221. Epub 2024 Apr 25.
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'.
日珥冷核中的等离子体是部分电离的,其电离度通常取决于等离子体及所考虑离子的实际动力学温度和密度。然而,我们证明,在典型的日珥条件下,导致部分电离的主要机制是辐射在等离子体中扩散时产生的光电离。该机制强烈依赖于来自周围太阳大气照射日珥的辐射。因此,要理解日珥等离子体的部分电离,需要对非局部热动平衡辐射转移问题进行复杂的求解。在本文中,我们讨论了氢、氦及其他一些重要物种的电离。我们还展示了非平衡电离的作用。本文是主题为“太阳大气的部分电离等离子体:最新进展与未来方向”这一特刊的一部分。