An in-depth spectroscopic examination of molecular bands from 3D hydrodynamical model atmospheres I. Formation of the G-band in metal-poor dwarf stars
A. J. Gallagher, E. Caffau, P. Bonifacio, H.-G. Ludwig, M. Steffen, M., Spite

TL;DR
This study uses advanced 3D spectral synthesis to analyze molecular bands in metal-poor dwarf stars, revealing significant differences from traditional models and emphasizing the importance of C/O ratios in spectral features.
Contribution
First application of large-scale 3D spectral synthesis for molecular bands in metal-poor dwarfs, highlighting the impact of 3D physics on abundance corrections and molecular formation.
Findings
3D corrections are stronger at lower metallicities
Oxygen abundance affects CH molecular features in the G-band
C/O ratio critically influences molecular spectral features in 3D models
Abstract
Recent developments in the three-dimensional (3D) spectral synthesis code Linfor3D have meant that, for the first time, large spectral wavelength regions, such as molecular bands, can be synthesised with it in a short amount of time. A detailed spectral analysis of the synthetic G-band for several dwarf turn-off-type 3D atmospheres (5850 <= T_eff [K] <= 6550, 4.0 <= log g <= 4.5, -3.0 <= [Fe/H] <= -1.0) was conducted, under the assumption of local thermodynamic equilibrium. We also examine carbon and oxygen molecule formation at various metallicity regimes and discuss the impact it has on the G-band. Using a qualitative approach, we describe the different behaviours between the 3D atmospheres and the traditional one-dimensional (1D) atmospheres and how the different physics involved inevitably leads to abundance corrections, which differ over varying metallicities. Spectra computed in…
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