Interferometric radii of bright Kepler stars with the CHARA Array: {\theta} Cygni and 16 Cygni A and B
T. R. White, D. Huber, V. Maestro, T. R. Bedding, M. J. Ireland, F., Baron, T. S. Boyajian, X. Che, J. D. Monnier, B. J. S. Pope, R. M., Roettenbacher, D. Stello, P. G. Tuthill, C. D. Farrington, P. J. Goldfinger,, H. A. McAlister, G. H. Schaefer, J. Sturmann, L. Sturmann

TL;DR
This study uses interferometry and asteroseismology to precisely measure the sizes, temperatures, and masses of three bright Kepler stars, providing valuable data for stellar models.
Contribution
It presents the first precise interferometric measurements of the angular diameters of these Kepler stars, combined with asteroseismic data for improved stellar parameter estimates.
Findings
Angular diameters measured with high precision.
Derived stellar radii, temperatures, and masses with minimal model dependence.
Results will enhance stellar evolution models.
Abstract
We present the results of long-baseline optical interferometry observations using the Precision Astronomical Visual Observations (PAVO) beam combiner at the Center for High Angular Resolution Astronomy (CHARA) Array to measure the angular sizes of three bright Kepler stars: {\theta} Cygni, and both components of the binary system 16 Cygni. Supporting infrared observations were made with the Michigan Infrared Combiner (MIRC) and Classic beam combiner, also at the CHARA Array. We find limb-darkened angular diameters of 0.753+/-0.009 mas for {\theta} Cyg, 0.539+/-0.007 mas for 16 Cyg A and 0.490+/-0.006 mas for 16 Cyg B. The Kepler Mission has observed these stars with outstanding photometric precision, revealing the presence of solar-like oscillations. Due to the brightness of these stars the oscillations have exceptional signal-to-noise, allowing for detailed study through…
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