Apsidal motion in massive eccentric binaries in NGC 6231: The case of HD 152219
S. Rosu, G. Rauw, M. Farnir, M.-A. Dupret, and A. Noels

TL;DR
This study measures the apsidal motion in the massive binary HD 152219 to probe stellar internal structure, revealing challenges in modeling internal mixing processes and stellar evolution.
Contribution
First detailed analysis of apsidal motion in HD 152219 linking observations with stellar interior models, highlighting the need for enhanced mixing physics.
Findings
Apsidal motion rate of 1.198±0.300 deg/yr measured.
Internal structure constant k2 = 0.00173±0.00052 inferred.
Models require enhanced turbulent mixing to match k2-value.
Abstract
The measurement of the apsidal motion in close eccentric massive binary systems provides essential information to probe the internal structure of the stars that compose the system. Following the determination of the fundamental stellar and binary parameters, we make use of the tidally induced apsidal motion to infer constraints on the internal structure of the stars composing the binary system HD152219. The extensive set of spectroscopic, photometric, and radial velocity observations allows us to constrain the fundamental parameters of the stars together with the rate of apsidal motion of the system. Stellar structure and evolution models are further built with the Cl\'es code testing different prescriptions for the internal mixing occurring inside the stars. The effect of stellar rotation axis misalignment with respect to the normal to the orbital plane on our interpretation of the…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Astronomy and Astrophysical Research · Astrophysics and Star Formation Studies
