The Solar Oxygen Abundance from an Empirical Three-Dimensional Model
arXiv:1409.6910 · doi:10.1051/0004-6361/201425049
Abstract
The Oxygen abundance in the solar photosphere, and consequently the solar metallicity itself, is still a controversial issue with far-reaching implications in many areas of Astrophysics. This paper presents a new determination obtained by fitting the forbidden OI line at 6300 A with an observational 3D model. The approach presented here is novel because previous determinations were based either on 1D empirical stratifications or on 3D theoretical models. The resulting best-fit abundances are lg E(O)=8.90 and lg E(Ni)=6.15. Nevertheless, introducing minor tweaks in the model and the procedure, it is possible to retrieve very different values, even down to lg E(O)=8.70. This extreme sensitivity of the abundance to possible systematic effects is not something specific to this particular work but probably reflects the real uncertainty inherent to all abundance determinations based on a prescribed model atmosphere.
Submitted to A&A
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Cited by in corpus (6)
- Solar oxygen abundance
- The photospheric solar oxygen project: III. Investigation of the centre-to-limb variation of the 630nm [OI]-NiI blend
- Continuum intensity and [O I] spectral line profiles in solar 3D photospheric models: the effect of magnetic fields
- Extended atomic data for oxygen abundance analyses
- Empirical determination of atomic line parameters of the 1.5 m spectral region
- Uncertainties in the solar photospheric oxygen abundance