The potential of asteroseismology for probing the core chemical stratification in white dwarf stars
arXiv:1611.05071 · doi:10.1051/0004-6361/201629935
Abstract
Context. The details of the C/O core structure in white dwarf stars has mostly remained inaccessible to the technique of asteroseismology, despite several attempts carried out in the past. Aims. We re-assess the potential of asteroseismology for probing the chemical stratification in white dwarf cores, in light of new highly efficient tools recently developed for that purpose. Methods. Using the forward modeling approach and a new parameterization for the core chemical stratification in ZZ Ceti stars, we test several situations typical of the usually limited constraints available, such as small numbers of observed independent modes, to carry out asteroseismology of these stars. Results. We find that, even with a limited number of modes, the core chemical stratification (in particular, the location of the steep chemical transitions expected in the oxygen profile) can be determined quite precisely due to the significant sensitivity of some confined modes to partial reflexion (trapping) effects. These effects are similar to the well known trapping induced by the shallower chemical transitions at the edge of the core and at the bottom of the H-rich envelope. We also find that success to unravel the core structure depends on the information content of the available seismic data. In some cases, it may not be possible to isolate a unique, well-defined seismic solution and the problem remains degenerate. Conclusions. Our results establish that constraining the core chemical stratification in white dwarf stars based solely on asteroseismology is possible, an opportunity that we have started to exploit.
7 pages, 4 figures, accepted for publication in the Astronomy & Astrophysics Journal
References in corpus (4)
- Pulsating White Dwarf Stars and Precision Asteroseismology
- Seismological studies of ZZ Ceti stars. I. The model grid and the application to individual stars
- A deeper understanding of white dwarf interiors
- Toward High Precision Seismic Studies of White Dwarf Stars: Parametrization of the Core and Tests of Accuracy
Cited by in corpus (15)
- The updated BaSTI stellar evolution models and isochrones. III. White Dwarfs
- TESS first look at evolved compact pulsators : Discovery and asteroseismic probing of the g-mode hot B subdwarf pulsator EC 21494-7018
- Searching for ZZ Ceti White Dwarfs in the Gaia Survey
- Probing the structure of Kepler ZZ Ceti stars with full evolutionary models-based asteroseismology
- Asteroseismological analysis of the ultra-massive ZZ Ceti stars BPM~37093, GD~518, and SDSS~J0840+5222
- On Trapped Modes In Variable White Dwarfs As Probes Of The C()O Reaction Rate
- On The Impact Of 22Ne On The Pulsation Periods Of Carbon-Oxygen White Dwarfs With Helium Dominated Atmospheres
- Pulsating low-mass white dwarfs in the frame of new evolutionary sequences: V. Asteroseismology of ELMV white dwarf stars
- Pulsating White Dwarfs
- New DA white dwarf models for asteroseismology of ZZ Ceti stars
- Discovery, TESS Characterization, and Modeling of Pulsations in the Extremely Low Mass White Dwarf GD 278
- Properties and Asteroseismological analysis of a new ZZ ceti discovered by TMTS
- The Heating and Pulsations of V386 Serpentis after its 2019 Dwarf Nova Outburst
- Exploring the internal rotation of the extremely low-mass He-core white dwarf GD 278 with TESS asteroseismology
- Asteroseismology of the ZZ Ceti star WD 1310+583 using the Transiting Exoplanet Survey Satellite