English

The solar carbon, nitrogen, and oxygen abundances from a 3D LTE analysis of molecular lines

Solar and Stellar Astrophysics 2021-12-11 v1

Abstract

Carbon, nitrogen, and oxygen are the fourth, sixth, and third most abundant elements in the Sun. Their abundances remain hotly debated due to the so-called solar modelling problem that has persisted for almost 2020 years. We revisit this issue by presenting a homogeneous analysis of 408408 molecular lines across 1212 diagnostic groups, observed in the solar intensity spectrum. Using a realistic 3D radiative-hydrodynamic model solar photosphere and LTE (local thermodynamic equilibrium) line formation, we find logϵC=8.47±0.02\log\epsilon_{C} = 8.47\pm0.02, logϵN=7.89±0.04\log\epsilon_{N} = 7.89\pm0.04, and logϵO=8.70±0.04\log\epsilon_{O} = 8.70\pm0.04. The stipulated uncertainties mainly reflect the sensitivity of the results to the model atmosphere; this sensitivity is correlated between the different diagnostic groups, which all agree with the mean result to within 0.030.03 dex. For carbon and oxygen, the molecular results are in excellent agreement with our 3D non-LTE analyses of atomic lines. For nitrogen, however, the molecular indicators give a 0.120.12 dex larger abundance than the atomic indicators, and our best estimate of the solar nitrogen abundance is given by the mean: 7.837.83 dex. The solar oxygen abundance advocated here is close to our earlier determination of 8.698.69 dex, and so the present results do not significantly alleviate the solar modelling problem.

Keywords

Cite

@article{arxiv.2109.04752,
  title  = {The solar carbon, nitrogen, and oxygen abundances from a 3D LTE analysis of molecular lines},
  author = {A. M. Amarsi and N. Grevesse and M. Asplund and R. Collet},
  journal= {arXiv preprint arXiv:2109.04752},
  year   = {2021}
}

Comments

12 pages, 6 figures, 3 tables; accepted for publication in Astronomy & Astrophysics