Period spacing of gravity modes strongly affected by rotation. Going beyond the traditional approximation
Vincent Prat, St\'ephane Mathis, Fran\c{c}ois Ligni\`eres, J\'er\^ome, Ballot, Pierre-Marie Culpin

TL;DR
This paper develops an analytical approach to understand gravity mode period spacings in rapidly rotating stars, accounting for the full Coriolis acceleration, which enhances the interpretation of complex asteroseismic data.
Contribution
It introduces a new approximation method that includes the full Coriolis effect for modeling gravity modes in rapidly rotating stars, extending beyond the traditional approximation.
Findings
Predicts two spectral patterns depending on stratification and rotation
Provides analytical prescriptions for period spacings of gravito-inertial waves
Enables constraints on internal rotation and stratification from observed spectra
Abstract
Context. As of today, asteroseismology mainly allows us to probe the internal rotation of stars when modes are only weakly affected by rotation using perturbative methods. Such methods cannot be applied to rapidly rotating stars, which exhibit complex oscillation spectra. In this context, the so-called traditional approximation, which neglects the terms associated with the latitudinal component of the rotation vector, describes modes that are strongly affected by rotation. This approximation is sometimes used for interpreting asteroseismic data, however, its domain of validity is not established yet. Aims. We aim at deriving analytical prescriptions for period spacings of low-frequency gravity modes strongly affected by rotation through the full Coriolis acceleration, which can be used to probe stellar internal structure and rotation. Methods. We approximated the asymptotic theory…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Astro and Planetary Science · Astronomy and Astrophysical Research
