The spectroscopic orbit of Capella revisited
Michael Weber, Klaus G. Strassmeier

TL;DR
This study provides the most precise spectroscopic orbit and stellar mass measurements for the binary star Capella, enhancing understanding of its evolutionary stage and magnetic activity effects.
Contribution
Recomputed the orbital elements of Capella using extensive high-resolution spectra, achieving unprecedented precision in stellar mass determination.
Findings
Masses of the stars are 2.573 and 2.488 solar masses.
Mass ratio of the system is 0.9673.
Orbit is the most precise and likely most accurate for Capella.
Abstract
Context. Capella is among the few binary stars with two evolved giant components. The hotter component is a chromospherically active star within the Hertzsprung gap, while the cooler star is possibly helium-core burning. Aims. The known inclination of the orbital plane from astrometry in combination with precise radial velocities will allow very accurate masses to be determined for the individual Capella stars. This will constrain their evolutionary stage and possibly the role of the active star's magnetic field on the dynamical evolution of the binary system. Methods. We obtained a total of 438 high-resolution \'echelle spectra during the years 2007-2010 and used the measured velocities to recompute the orbital elements. Our double-lined orbital solution yields average residuals of 64 m/s for the cool component and 297 m/s for the more rapidly rotating hotter component. Results. The…
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