Korg: Fitting, Model Atmosphere Interpolation, and Brackett Lines
We describe several updates to Korg , a package for 1D LTE spectral synthesis of FGKM stars. Built-in functions to fit observed spectra via synthesis or equivalent widths make it easy to take advantage of Korg 's automatic differentiation. Comparison to a past analysis of 18 Sco shows that we o...
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Veröffentlicht in: | The Astronomical journal 2024-02, Vol.167 (2), p.83 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | We describe several updates to
Korg
, a package for 1D LTE spectral synthesis of FGKM stars. Built-in functions to fit observed spectra via synthesis or equivalent widths make it easy to take advantage of
Korg
's automatic differentiation. Comparison to a past analysis of 18 Sco shows that we obtain significantly reduced line-to-line abundance scatter with
Korg
. Fitting and synthesis are facilitated by a rigorously tested model atmosphere interpolation method, which introduces negligible error to synthesized spectra for stars with
T
eff
≳ 4000 K. For cooler stars, atmosphere interpolation is complicated by the presence of molecules, though we demonstrate an adequate method for cool dwarfs. The chemical equilibrium solver has been extended to include polyatomic and charged molecules, extending
Korg
's regime of applicability to M stars. We also discuss a common oversight regarding the synthesis of hydrogen lines in the infrared, and show that
Korg
's Brackett line profiles are a much closer match to observations than others available. Documentation, installation instructions, and tutorials are available at
https://github.com/ajwheeler/Korg.jl
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ISSN: | 0004-6256 1538-3881 |
DOI: | 10.3847/1538-3881/ad19cc |