Fundamental properties of the Population II fiducial stars HD 122563 and Gmb 1830 from CHARA interferometric observations
O. L. Creevey, F. Th\'evenin, T. S. Boyajian, P. Kervella, A., Chiavassa, L. Bigot, A. M\'erand, U. Heiter, P. Morel, B. Pichon, H. A. Mc, Alister, T. A. ten Brummelaar, R. Collet, G. T. van Belle, V. Coud\'e du, Foresto, C. Farrington, P. J. Goldfinger, J. Sturmann, L. Sturmann

TL;DR
This study precisely measured the angular diameters, temperatures, and fundamental parameters of two metal-poor Population II stars using interferometry, providing new constraints for stellar models and spectroscopic analyses.
Contribution
It presents the first interferometric measurements of these stars' diameters and derives their fundamental parameters with unprecedented precision, informing stellar evolution models.
Findings
Angular diameters measured with high precision.
Effective temperatures determined with errors less than 55 K.
Stellar models constrained by precise radii and luminosities.
Abstract
We have determined the angular diameters of two metal-poor stars, HD 122563 and Gmb 1830, using CHARA and Palomar Testbed Interferometer observations. For the giant star HD 122563, we derive an angular diameter theta_3D = 0.940 +- 0.011 milliarcseconds (mas) using limb-darkening from 3D convection simulations and for the dwarf star Gmb 1830 (HD 103095) we obtain a 1D limb-darkened angular diameter theta_1D = 0.679 +- 0.007 mas. Coupling the angular diameters with photometry yields effective temperatures with precisions better than 55 K (Teff = 4598 +- 41 K and 4818 +- 54 K --- for the giant and the dwarf star, respectively). Including their distances results in very well-determined luminosities and radii (L = 230 +- 6 L_sun, R = 23.9 +- 1.9 R_sun and L = 0.213 +- 0.002 L_sun, R = 0.664 +- 0.015 R_sun, respectively). We used the CESAM2k stellar structure and evolution code in order to…
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