On the evolutionary and pulsation mass of Classical Cepheids: III. the case of the eclipsing binary Cepheid CEP0227 in the Large Magellanic Cloud
P. G. Prada Moroni (1,2), M. Gennaro (3), G. Bono (4,5), G., Pietrzynski (6,7), W. Gieren (6), B. Pilecki (6,7), D. Graczyk (6), I. B., Thompson (8). ((1) Dipartimento di Fisica, Universita' di Pisa, (2), INFN--Pisa, (3) MPIA, (4) Dipartimento di Fisica, Universita' di Roma Tor

TL;DR
This study uses a Bayesian approach with evolutionary models to accurately determine the intrinsic parameters of the eclipsing binary Cepheid CEP0227 in the LMC, including mass, age, distance, and reddening.
Contribution
It introduces a Bayesian method to constrain stellar parameters of Cepheids using models with various physical assumptions, achieving results consistent with dynamical measurements.
Findings
Stellar masses of ~4.14 M_sun agree with dynamical data.
Ages of ~151 Myr are consistent across models.
Distance modulus and reddening match literature estimates.
Abstract
We present a new Bayesian approach to constrain the intrinsic parameters (stellar mass, age) of the eclipsing binary system CEP0227 in the LMC. We computed evolutionary models covering a broad range in chemical compositions and in stellar mass. Independent sets of models were constructed either by neglecting or by including a moderate convective core overshooting (beta=0.2) during central H-burning phases. Models were also constructed either by neglecting or by assuming a canonical (eta=0.4,0.8) or an enhanced (eta=4) mass loss rate. The solutions were computed in three different planes: luminosity-temperature, mass-radius and gravity-temperature. By using the Bayes Factor, we found that the most probable solutions were obtained in the gravity-temperature plane with a Gaussian mass prior distribution. The evolutionary models constructed by assuming a moderate convective core…
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