Diameters and Temperatures VII: High-angular resolution measurements of Solar-type stars with the CHARA Array

We present interferometric measurements of angular diameters for 27 nearby solar-type stars obtained with the Precision Astronomical Visible Observations (PAVO) beam combiner at the CHARA Array. The sample spans a broad range of metallicities, includes several known exoplanet hosts, and covers evolutionary stages from the zero-age main sequence to mildly evolved subgiants. Uniform-disk and limb-darkened angular diameters were measured for each target and combined with bolometric fluxes and Gaia parallaxes to determine precise, model-independent stellar radii, effective temperatures, and luminosities. We achieve typical uncertainties of ∼1% in radius and ∼1.5% in effective temperature. Comparisons with multiple stellar evolutionary model grids yield mass and age estimates and enable assessment of grid-to-grid systematics, highlighting sensitivities to abundances, evolutionary stage, and proximity to grid boundaries. Our results provide empirical benchmarks for testing stellar evolutionary theory, refining surface brightness-color relations, and improving the characterization of exoplanet host stars.

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Publication Details

Journal
The Open Journal of Astrophysics
Published
2026-10-05
DOI
https://doi.org/10.33232/001c.172090
Primary Topic
Stellar, planetary, and galactic studies
Type
article
Field-Weighted Citation Impact
0.00

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article

Diameters and Temperatures VII: High-angular resolution measurements of Solar-type stars with the CHARA Array

Gail H. Schaefer, Tabetha S. Boyajian, Tyler G. Ellis, Michael Ireland et al.
The Open Journal of Astrophysics
Stellar, planetary, and galactic studies
article

Diameters and Temperatures VII: High-angular resolution measurements of Solar-type stars with the CHARA Array

Gail H. Schaefer, Tabetha S. Boyajian, Tyler G. Ellis, Michael Ireland, Kaspar von Braun, Ashley A. Elliott, Daniel Huber, Timothy R. White, Jeremy Jones, Emelly D. Tiburcio, Eliot Hiegel
article en

Abstract

We present interferometric measurements of angular diameters for 27 nearby solar-type stars obtained with the Precision Astronomical Visible Observations (PAVO) beam combiner at the CHARA Array. The sample spans a broad range of metallicities, includes several known exoplanet hosts, and covers evolutionary stages from the zero-age main sequence to mildly evolved subgiants. Uniform-disk and limb-darkened angular diameters were measured for each target and combined with bolometric fluxes and Gaia parallaxes to determine precise, model-independent stellar radii, effective temperatures, and luminosities. We achieve typical uncertainties of ∼1% in radius and ∼1.5% in effective temperature. Comparisons with multiple stellar evolutionary model grids yield mass and age estimates and enable assessment of grid-to-grid systematics, highlighting sensitivities to abundances, evolutionary stage, and proximity to grid boundaries. Our results provide empirical benchmarks for testing stellar evolutionary theory, refining surface brightness-color relations, and improving the characterization of exoplanet host stars.

The Open Journal of AstrophysicsVol. 9
Louisiana State University (US)
National Science Foundation, Georgia State University, Ministry of Science, ICT and Future Planning, Office of the Vice President for Research and Economic Development, University at Buffalo
Openalex Percentile: Top 26%
Stellar, planetary, and galactic studies
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