Gaia/GSP-spec spectroscopic properties of gamma Doradus pulsators
P. de Laverny, A. Recio-Blanco, C. Aerts, P.A. Palicio

TL;DR
This study utilizes Gaia DR3 spectroscopic data to characterize gamma Doradus pulsators, confirming their properties, Galactic distribution, and chemical composition, and establishing a robust sample of genuine pulsators for future research.
Contribution
It provides the first comprehensive spectroscopic analysis of a large sample of Gaia gamma Doradus pulsators, validating their parameters and Galactic context.
Findings
Most stars belong to the Galactic thin disc.
Derived stellar parameters are of high quality and typical of gamma Dor pulsators.
A robust sub-sample of slow-rotating gamma Dor stars was identified.
Abstract
Gaia/DR3 has provided a large sample of new g-mode pulsators, among which~11,600 are Gam Dor stars. This work present the spectroscopic parameters of these Gam Dor pulsators estimated by the GSP-spec module that analysed millions of Gaia spectra. The Galactic positions, kinematics, and orbital properties of these new Gaia pulsators were examined in order to define a sub-sample belonging to the Milky Way thin disc, in which these young stars should preferentially be found. The stellar luminosities, radii, and astrometric surface gravities were estimated without adopting any priors from uncertain stellar evolution models. These parameters, combined with the GSP-spec effective temperatures, spectroscopic gravities, and metallicities were then validated by comparison with recent literature studies. Most stars are found to belong to the Galactic thin disc, as expected. It is also found that…
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Taxonomy
TopicsGeophysics and Gravity Measurements · Pulsars and Gravitational Waves Research · Astronomy and Astrophysical Research
