Calibrating the metallicity of M dwarfs in wide physical binaries with F-, G-, and K- primaries - I: High-resolution spectroscopy with HERMES: stellar parameters, abundances, and kinematics
D. Montes (1), R. Gonz\'alez-Peinado (1), H.M. Tabernero (2, 1), J.A., Caballero (3), E. Marfil (1), F.J. Alonso-Floriano (4, 1), M., Cort\'es-Contreras (3), J.I. Gonz\'alez Hern\'andez (5, 6), A. Klutsch (7,1),, C. Moreno-J\'odar (8, 1) ((1) UCM

TL;DR
This study uses high-resolution spectroscopy of binary systems with F, G, and K primaries and M dwarf companions to calibrate metallicity measurements, analyze stellar parameters, and identify potential exoplanet hosts.
Contribution
It provides a comprehensive dataset of stellar parameters and metallicities for binary systems, improving M dwarf metallicity calibration and identifying high-metallicity M dwarfs for exoplanet surveys.
Findings
Identified 192 physically bound systems with detailed stellar parameters.
Classified primaries into various Galactic populations and stellar groups.
Discovered 13 high-metallicity M dwarf companions suitable for exoplanet studies.
Abstract
We investigated almost 500 stars distributed among 193 binary or multiple systems made of late-F, G-, or early-K primaries and late-K or M dwarf companion candidates. For all of them, we compiled or measured coordinates, J-band magnitudes, spectral types, distances, and proper motions.With these data, we established a sample of 192 physically bound systems. In parallel, we carried out observations with HERMES/Mercator and obtained high resolution spectra for the 192 primaries and five secondaries. We used these spectra and the automatic StePar code for deriving precise stellar atmospheric parameters: Teff, log g, Vmicro, and chemical abundances for 13 atomic species, including [Fe/H]. After computing Galactocentric space velocities for all the primary stars, we performed a kinematic analysis and classified them in different Galactic populations and stellar kinematic groups of very…
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