Probing the mid-layer structure of red giants I. Mixed-mode coupling factor as a seismic diagnosis
arXiv:1912.06008 · doi:10.1051/0004-6361/201936864
Abstract
The space-borne missions CoRoT and Kepler have already brought stringent constraints on the internal structure of low-mass evolved stars, a large part of which results from the detection of mixed modes. However, all the potential of these oscillation modes as a diagnosis of the stellar interior has not been fully exploited yet. In particular, the coupling factor or the gravity-offset of mixed modes, and , are expected to provide additional constraints on the mid-layers of red giants, which are located between the hydrogen-burning shell and the neighborhood of the base of the convective zone. In the present paper, we investigate the potential of the coupling factor in probing the mid-layer structure of evolved stars. Guided by typical stellar models and general physical considerations, we modeled the coupling region along with evolution. We subsequently obtained an analytical expression of based on the asymptotic theory of mixed modes and compared it to observations. We show that the value of is degenerate with respect to the thickness of the coupling evanescent region and the local density scale height. A structural interpretation of the global variations in observed on the subgiant and the red giant branches, as well as on the red clump, was obtained in the light of this model. We demonstrate that has the promising potential to probe the migration of the base of the convective region as well as convective extra-mixing in evolved red giant stars with typically Hz. We also show that the frequency-dependence of cannot be neglected in the oscillation spectra of such stars, which is in contrast with what is assumed in the current measurement methods. This analytical study paves the way for a more quantitative exploration of the link of with the internal properties of evolved stars using stellar models.
27 pages, accepted in A\&A
References in corpus (10)
- Mixed modes in red giants: a window on stellar evolution
- Structural glitches near the cores of red giants revealed by oscillations in g-mode period spacings from stellar models
- Angular momentum redistribution by mixed modes in evolved low-mass stars. II. Spin-down of the core of red giants induced by mixed modes
- Can plume-induced internal gravity waves regulate the core rotation of subgiant stars?
- Theoretical power spectra of mixed modes in low mass red giant stars
- Period spacings in red giants; III. Coupling factors of mixed modes
- Angular momentum redistribution by mixed modes in evolved low-mass stars. I. Theoretical formalism
- An Elementary Introduction to the JWKB Approximation
- Verification of Asymptotic Relation for Mixed Modes in Red Giant Stars
- Evolution of the gravity offset of mixed modes in RGB stars
Cited by in corpus (12)
- Semi-analytic Expressions for the Isolation and Coupling of Mixed Modes
- Variations of the mixing character of dipolar mixed modes in red giant stars
- Automated approach to measure stellar inclinations: validation through large-scale measurements on the red giant branch
- Differential Modelling Systematics across the HR Diagram from Asteroseismic Surface Corrections
- Mode Mixing and Rotational Splittings: II. Reconciling Different Approaches to Mode Coupling
- Asteroseismology of the dip structure in period-spacings of rapidly rotating gamma Doradus stars caused by the coupling between core and envelope oscillations
- Red Horizontal Branch stars: an asteroseismic perspective
- Evolution of Dipolar Mixed-mode Coupling Factor in Red Giant Stars: Impact of Buoyancy Spike
- Multi-cavity gravito-acoustic modes in stars: A general analytical resonance condition
- Asteroseismology of evolved stars with EGGMiMoSA I. Theoretical mixed-mode patterns from the subgiant to the RGB phase
- TESS Asteroseismic Analysis of HD 76920: The Giant Star Hosting An Extremely Eccentric Exoplanet
- Contributions of structural variations to the asymptotic mixed-mode coupling Factor in red giant stars