Study of the low-order $\Delta\nu$-${\bar \rho}$ relation for moderately-rotating $\delta$ Scuti stars and its impact on their characterisation
Julio E. Rodr\'iguez-Mart\'in, Antonio Garc\'ia Hern\'andez and, Juan Carlos Su\'arez, Jos\'e Ram\'on Rod\'on

TL;DR
This study investigates how rotation affects the $ abla u$-${ar ho}$ relation in $ ext{delta}$ Scuti stars, improving their physical characterization by incorporating rotation effects into asteroseismic models and applying findings to observed stars.
Contribution
It extends previous non-rotating models by quantitatively analyzing rotation impacts on the $ abla u$-${ar ho}$ relation in a large grid of 1D models, and applies this to real stars observed by CoRoT.
Findings
The $ abla u$-${ar ho}$ relation remains compatible with previous models when rotation is included.
Dispersion around the fit is mainly due to stellar mass distribution and evolutionary stage.
Including rotation leads to higher estimated masses, radii, luminosities, and lower densities for $ ext{delta}$ Scuti stars.
Abstract
The large separation in the low radial order regime is considered as a highly valuable observable to derive mean densities of Scuti stars, due to its independence with rotation. Up to now, theoretical studies of this - relation have been limited to 1D non-rotating models, and 2D pseudo-evolutionary models. The present work aims at completing this scenario by investigating quantitatively the impact of rotation in this relation on a large grid of 1D asteroseismic models representative of Scuti stars. These include rotation effects on both the stellar evolution and the interaction with pulsation. This allowed us to compute the stellar deformation, get the polar and equatorial radii, and correct the stellar mean densities. We found that the new - relation for rotating models is compatible with previous works. We explained the…
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