Sounding stellar cores with mixed modes
arXiv:1310.4752 · doi:10.1051/eas/1363016
Abstract
The space-borne missions CoRoT and Kepler have opened a new era in stellar physics, especially for evolved stars, with precise asteroseismic measurements that help determine precise stellar parameters and perform ensemble astero seismology. This paper deals with the quality of the information that we can retrieve from the oscillations. It focusses on the conditions for obtaining the most accurate measurement of the radial and non-radial oscillation patterns. This accuracy is a prerequisite for making the best with asteroseismic data. From radial modes, we derive proxies of the stellar mass and radii with an unprecedented accuracy for field stars. For dozens of subgiants and thousands of red giants, the identification of mixed modes (corresponding to gravity waves propagating in the core coupled to pressure waves propagating in the envelope) indicates unambiguously their evolutionary status. As probes of the stellar core, these mixed modes also reveal the internal differential rotation and show the spinning down of the core rotation of stars ascending the red giant branch. A toy model of the coupling of waves constructing mixed modes is exposed, for illustrating many of their features.
Meeting: New advances in stellar physics: from microscopic to macroscopic processes Roscoff, 27-31 May 2013
References in corpus (9)
- Spin down of the core rotation in red giants
- Seismic diagnostics for transport of angular momentum in stars 1. Rotational splittings from the PMS to the RGB
- Asymptotic and measured large frequency separations
- Seismic diagnostics for transport of angular momentum in stars 2. Interpreting observed rotational splittings of slowly-rotating red giant stars
- Testing convective-core overshooting using period spacings of dipole modes in red giants
- Properties of oscillation modes in subgiant stars observed by Kepler
- Asteroseismology of Procyon with SOPHIE
- Non-perturbative effect of rotation on dipolar mixed modes in red giant stars
- Red giant seismology: observations
Cited by in corpus (5)
- The connection between stellar granulation and oscillation as seen by the Kepler mission
- Theoretical seismology in 3D : nonlinear simulations of internal gravity waves in solar-like stars
- Magnetic signatures on mixed-mode frequencies. II. Period spacings as a probe of the internal magnetism of red giants
- Stellar oscillations - the adiabatic case
- Seismic indices -- a deep look inside evolved stars