Abstract
Context. Classical double-mode pulsators (RR Lyrae stars and δ Cepheids) are important because of their simultaneous pulsation in low-order radial modes. This enables us to place stringent constraints on their physical parameters. Aims. We use 30 bright galactic double-mode RR Lyrae (RRd) stars to estimate their luminosities and compare these luminosities with those derived from the parallaxes of the recent data release (EDR3) of the Gaia survey. Methods. We employed pulsation and evolutionary models together with observationally determined effective temperatures to derive the basic stellar parameters. Results. When we exclude six outlying stars (e.g., those with blending issues), the RRd and Gaia luminosities correlate well. With the adopted temperature zeropoint from one of the works based on the infrared flux method, we find it necessary to increase the Gaia parallaxes by 0.02 mas to bring the RRd and Gaia luminosities into agreement. This value is consonant with those derived from studies on binary stars in the context of Gaia. We also examined the resulting period-luminosity-metallicity (PLZ) relation in the 2MASS K band as follows from the RRd parameters. This leads to the verification of two independently derived other PLZs. No significant zeropoint differences are found. Furthermore, the predicted K absolute magnitudes agree within σ = 0.005 − 0.01 mag.
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