The Surface Brightness--Color Relations Based on Eclipsing Binary Stars: Toward Precision Better than 1% in Angular Diameter Predictions
Dariusz Graczyk, Piotr Konorski, Grzegorz Pietrzynski, Wolfgang, Gieren, Jesper Storm, Nicolas Nardetto, Alexandre Gallenne, Pierre F. L., Maxted, Pierre Kervella, Zbigniew Kolaczkowski

TL;DR
This paper calibrates surface brightness--color relations using eclipsing binary stars, achieving near 1% precision in angular diameter predictions, which is crucial for precise stellar measurements and future Gaia data utilization.
Contribution
It introduces a new calibration of SBC relations based solely on eclipsing binaries, matching interferometric accuracy and paving the way for sub-1% precision with upcoming Gaia data.
Findings
Derived geometric angular diameters with better than 10% precision.
Established SBC relations comparable to interferometric methods.
Projected sub-1% precision in angular diameters with future Gaia parallaxes.
Abstract
In this study we investigate the calibration of surface brightness--color (SBC) relations based solely on eclipsing binary stars. We selected a sample of 35 detached eclipsing binaries with trigonometric parallaxes from Gaia DR1 or Hipparcos, whose absolute dimensions are known with an accuracy better than 3% and that lie within 0.3 kpc from the Sun. For the purpose of this study, we used mostly homogeneous optical and near-infrared photometry based on the Tycho-2 and 2MASS catalogs. We derived geometric angular diameters for all stars in our sample with a precision better than 10%, and for 11 of them with a precision better than 2%. The precision of individual angular diameters of the eclipsing binary components is currently limited by the precision of the geometric distances (5% on average). However, by using a subsample of systems with the best agreement between their geometric…
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