Line formation of He I D3 and He I 10830 {\AA} in a small-scale reconnection event
T. Libbrecht, J. P. Bj{\o}rgen, J. Leenaarts, J. de la Cruz, Rodr\'iguez, V. Hansteen, J. Joshi

TL;DR
This study investigates the formation of He I D3 and He I 10830 Å lines in small-scale reconnection events, using 3D non-LTE simulations of Ellerman bombs to understand their emission and absorption features.
Contribution
It provides a detailed 3D non-LTE modeling of helium line formation in small-scale reconnection events, linking synthetic spectra with observed data and elucidating the physical conditions involved.
Findings
He I D3 and He I 10830 Å emissions form in a thin shell around the EB at ~0.8 Mm.
He I D3 absorption occurs above the EB at ~4 Mm.
Emission is driven by photoionization-recombination from EUV radiation in hot, dense regions.
Abstract
Aims. We aim to explain line formation of He I D3 and He I 10830 {\AA} in small-scale reconnection events. Methods. We make use of a simulated Ellerman bomb (EB), present in a Bifrost-generated radiative Magnetohydrodynamics (rMHD) snapshot. The resulting He I D3 and He I 10830 \AA\ line intensities are synthesized in 3D using the non-LTE Multi3D code. We compare the synthetic helium spectra with observed SST/TRIPPEL raster scans of EBs in He I 10830 \AA\ and He I D3. Results. Emission in He I D3 and He I 10830 \AA\ is formed in a thin shell around the EB at a height of Mm while the He I D3 absorption is formed above the EB at Mm. The height at which the emission is formed corresponds to the lower boundary of the EB, where the temperature increases rapidly from K to K. The opacity in He I D3 and He I 10830 \AA\ is generated via…
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