Behaviour of molecular hydrogen emission in three solar flares
Abstract
We have systematically investigated ultraviolet (UV) emission from molecular hydrogen (H) using the Interface Region Imaging Spectrometer (IRIS), during three X-ray flares of C5.1, C9.7 and X1.0 classes on Oct. 25, 2014. Significant emission from five H spectral lines appeared in the flare ribbons, interpreted as photo-excitation (fluorescence) due to the absorption of UV radiation from two Si IV spectral lines. The H profiles were broad and consisted of two non-stationary components in red and in the blue wings of the line in addition to the stationary component. The red (blue) wing components showed small redshifts (blue shifts) of ~5-15 km s (~5-10 km s). The nonthermal velocities were found to be ~5-15 km s. The interrelation between intensities of H lines and their branching ratios confirmed that H emission formed under optically thin plasma conditions. There is a strong spatial and temporal correlation between Si IV and H emission, but the H emission is more extended and diffuse, further suggesting H fluorescence, and - by analogy with flare ''back-warming'' providing a means to estimate the depth from which the H emission originates. We find that this is 1871157 km and 1207112 km below the source of the Si IV emission, in two different ribbon locations.
Cite
@article{arxiv.2309.07799,
title = {Behaviour of molecular hydrogen emission in three solar flares},
author = {Sargam M. Mulay and Lyndsay Fletcher and Hugh Hudson and Nicolas Labrosse},
journal= {arXiv preprint arXiv:2309.07799},
year = {2023}
}
Comments
14 pages, 12 figures, accepted for publication in MNRAS