Post first dredge-up [C/N] ratio as age indicator. Theoretical calibration
Maurizio Salaris (1), Adriano Pietrinferni (2), Anna M. Piersimoni, (2), Santi Cassisi (2,3) ((1) Astrophysics Research Institute, Liverpool John, Moores University, United Kingdom, (2) INAF-Osservatorio Astronomico di, Collurania, Italy, (3) Instituto de Astrofisica de Canarias

TL;DR
This paper provides a theoretical calibration of the [C/N] ratio in red giant stars after the first dredge-up as an age indicator, accounting for various stellar parameters and tested against observational data.
Contribution
It offers a new calibration linking [C/N]_{FDU} with age and metallicity, considering multiple stellar evolution factors and comparing with observational data.
Findings
Calibration matches qualitative trends with observed data.
Age differences up to 2 Gyr when using different stellar models.
More precise measurements needed for better validation.
Abstract
We performed a detailed analysis of the use of [C/N] measured in red giant branch stars between the completion of the first dredge up and the red giant branch bump ([C/N]_{FDU}) as age indicator. [C/N]_{FDU} cannot give accurate ages for individual stars, but may provide a general chronology for the formation of composite populations and add constraints to analyses of red giants from surface gravity-effective temperature diagrams. We provide a theoretical calibration of [C/N]_{FDU} in terms of total metallicity [M/H] and age, for ages greater than 1 Gyr, which we tested against variations in the initial heavy element distribution (scaled-solar vs alpha-enhanced), efficiency of overshooting from MS convective cores and from the convective envelopes, variations in the initial He abundance and in the mixing length parameter. Our calibration is compared with a small sample of available…
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