Pulsational and evolutionary analysis of the double-mode RR Lyrae star BS Com
I. Dekany, G. Kovacs, J. Jurcsik, R. Szabo, M. Varadi, A. Sodor, K., Posztobanyi, Zs. Hurta, K. Vida, N. Vityi, and A. Szing

TL;DR
This study combines pulsational and evolutionary models to accurately determine the physical parameters of the double-mode RR Lyrae star BS Com, confirming the consistency of these models with observed data.
Contribution
It provides a detailed analysis of BS Com using combined pulsational and evolutionary models, offering precise physical parameters and insights into the star's evolutionary stage.
Findings
Derived stellar mass: 0.698 solar masses
Effective temperature: approximately 6840 K
Metallicity: around -1.6 dex
Abstract
We derive the basic physical parameters of the field double-mode RR Lyrae star BS Com from its observed periods and the requirement of consistency between the pulsational and evolutionary constraints. By using the current solar-scaled horizontal branch evolutionary models of Pietrinferni et al. (2004) and our linear non-adiabatic purely radiative pulsational models, we get M/M(Sun) = 0.698 +/- 0.004, log(L/L(Sun)) = 1.712 +/- 0.005, T(eff) = 6840 +/- 14 K, [Fe/H] = -1.67 +/- 0.01, where the errors are standard deviations assuming uniform age distribution along the full range of uncertainty in age. The last two parameters are in a good agreement with the ones derived from the observed BVIc colours and the updated ATLAS9 stellar atmosphere models. We get T(eff) = 6842 +/- 10 K, [Fe/H] = -1.58 +/- 0.11, where the errors are purely statistical ones. It is remarkable that the derived…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Astronomy and Astrophysical Research · Gamma-ray bursts and supernovae
