Age and helium content of the open cluster NGC 6791 from multiple eclipsing binary members. III. Constraints from a subgiant
K. Brogaard, F. Grundahl, E. L. Sandquist, D. Slumstrup, M. L. Jensen,, J. B. Thomsen, J. H. J{\o}rgensen, J. R. Larsen, S. T. Bj{\o}rn, C. T. G., S{\o}rensen, H. Bruntt, T. Arentoft, S. Frandsen, J. Jessen-Hansen, J. A., Orosz, R. Mathieu, A. Geller, N. Ryde, D. Stello

TL;DR
This study uses measurements of a non-eclipsing binary star in NGC 6791 to refine stellar models and improve the accuracy of the cluster's age estimate, supporting previous findings with additional constraints.
Contribution
It introduces measurements of a non-eclipsing binary member to strengthen constraints on stellar models and cluster age in NGC 6791.
Findings
Refined cluster age to 8.3 Gyr with 0.3 Gyr uncertainty
Determined stellar masses and radii with high precision
Confirmed previous age estimates using additional binary data
Abstract
Models of stellar structure and evolution can be constrained using accurate measurements of the parameters of eclipsing binary members of open clusters. Multiple binary stars provide the means to tighten the constraints and, in turn, to improve the precision and accuracy of the age estimate of the host cluster. In the previous two papers of this series, we have demonstrated the use of measurements of multiple eclipsing binaries in the old open cluster NGC6791 to set tighter constraints on the properties of stellar models than was previously possible, thereby improving both the accuracy and precision of the cluster age. We identify and measure the properties of a non-eclipsing cluster member, V56, in NGC\,6791 and demonstrate how this provides additional model constraints that support and strengthen our previous findings. We analyse multi-epoch spectra of V56 from FLAMES in conjunction…
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