Constraining convective regions with asteroseismic linear structural inversions
arXiv:1711.05031 · doi:10.1051/0004-6361/201730693
Abstract
Context. Convective regions in stellar models are always associated with uncertainties, for example due to extra-mixing or the possible inaccurate position of the transition from convective to radiative transport of energy. These have a strong impact on stellar models and their fundamental parameters. The most promising method to reduce these uncertainties is to use asteroseismology to derive diagnostics probing the structural characteristics of these regions. Aims. We wish to use custom-made integrated quantities to improve the capabilities of seismology to probe convective regions in stellar interiors. We hope to increase the number of indicators obtained with structural seismic inversions to provide additional constraints on stellar models and the fundamental parameters determined from theoretical modeling. Methods. First, we present new kernels associated with a proxy of the entropy in stellar interiors. We then show how these kernels can be used to build custom-made integrated quantities probing convective regions inside stellar models. We present two indicators suited to probe convective cores and envelopes, respectively, and test them on artificial data. Results. We show that it is possible to probe both convective cores and envelopes using appropriate indicators obtained with structural inversion techniques. These indicators provide direct constraints on a proxy of the entropy of the stellar plasma, sensitive to the characteristics of convective regions. These constraints can then be used to improve the modeling of solar-like stars by providing an additional degree of selection of models obtained from classical forward modeling approaches. We also show that in order to obtain very accurate indicators, we need l = 3 modes for the envelope but that the core-conditions indicator is more flexible in terms of the seismic data required for its use.
Accepted for publication in Astronomy and Astrophysics
References in corpus (12)
- CLES, Code Liegeois d'Evolution Stellaire
- A new correction of stellar oscillation frequencies for near-surface effects
- The Liege Oscillation Code
- Measuring the extent of convective cores in low-mass stars using Kepler data: towards a calibration of core overshooting
- Surface-effect corrections for solar-like oscillations using 3D hydrodynamical simulations
- On the proper use of the Schwarzschild and Ledoux criteria in stellar evolution computations
- Seismic measurement of the locations of the base of convection zone and helium ionization zone for stars in the {\it Kepler} seismic LEGACY sample
- Stellar acoustic radii, mean densities and ages from seismic inversion techniques
- First solar models with OPAS opacity tables
- 12 Bootis: a test bed for extra-mixing processes in stars
- Analysis of the linear approximation of seismic inversions for various structural pairs
- Asteroseismic inversions in the Kepler era: application to the Kepler Legacy sample
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- AIMS - A new tool for stellar parameter determinations using asteroseismic constraints
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- Kepler-93: a testbed for detailed seismic modelling and orbital evolution of super-earths around solar-like stars
- Thorough characterisation of the 16 Cygni system. Part II. Seismic inversions of the internal structure
- Asteroseismic modelling strategies in the PLATO era I. Mean density inversions and direct treatment of the seismic information
- Influence of the magnetic activity cycle on mean density and acoustic radius inversions
- Revisiting Kepler-444 Part I. Seismic modelling and inversions of stellar structure
- Probing stellar cores from inversions of frequency separation ratios