Fundamental stellar parameters of benchmark stars from CHARA interferometry -- III. Giant and subgiant stars
I. Karovicova, T.R. White, T. Nordlander, L. Casagrande, M. Ireland,, D. Huber

TL;DR
This study precisely measures fundamental parameters of seven giant and subgiant stars using interferometry, spectroscopy, and stellar models to improve calibration standards for large galactic surveys.
Contribution
It provides new, highly accurate stellar parameters for benchmark giants and subgiants, integrating interferometry, 3D limb-darkening, and NLTE spectroscopy for the first time.
Findings
Six stars have Teff measured with better than 1% accuracy.
Median uncertainties in logg and [Fe/H] are 0.034dex and 0.07dex.
One star's Teff uncertainty is 2%, requiring further measurement improvement.
Abstract
Large spectroscopic surveys of the Milky Way need to be calibrated against a sample of benchmark stars to ensure the reliable determination of atmospheric parameters. We present new fundamental stellar parameters of seven giant and subgiant stars that will serve as benchmarks. The aim is to reach a precision of 1% in the effective temperature. This precision is essential for accurate determinations of the full set of fundamental parameters and abundances of stars observed by the surveys. We observed HD121370 (etaBoo), HD161797 (muHer), HD175955, HD182736, HD185351, HD188512 (betaAql), and HD189349 using the high angular resolution optical interferometric instrument PAVO/CHARA. The limb-darkening corrections were determined from 3D model atmospheres based on the STAGGER grid. The Teff were determined directly from the Stefan-Boltzmann relation, with an iterative procedure to interpolate…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Astronomy and Astrophysical Research · Astronomical Observations and Instrumentation
