The Effect of Crystallization on the Pulsations of White Dwarf Stars
arXiv:astro-ph/9907040 · doi:10.1086/308044
Abstract
We consider the pulsational properties of white dwarf star models with temperatures appropriate for the ZZ Ceti instability strip and with masses large enough that they should be substantially crystallized. Our work is motivated by the existence of a potentially crystallized DAV, BPM 37093, and the expectation that digital surveys in progress will yield many more such massive pulsators. A crystallized core makes possible a new class of oscillations, the torsional modes, although we expect these modes to couple at most weakly to any motions in the fluid and therefore to remain unobservable. The p-modes should be affected at the level of a few percent in period, but are unlikely to be present with observable amplitudes in crystallizing white dwarfs any more than they are in the other ZZ Ceti's. Most relevant to the observed light variations in white dwarfs are the g-modes. We find that the kinetic energy of these modes is effectively excluded from the crystallized cores of our models. As increasing crystallization pushes these modes farther out from the center, the mean period spacing between radial overtones increases substantially with the crystallized mass fraction. In addition, the degree and structure of mode trapping is affected. The fact that some periods are strongly affected by changes in the crystallized mass fraction while others are not suggests that we may be able to disentangle the effects of crystallization from those due to different surface layer masses.
18 pages, 5 figures, accepted on 1999 July 2 for publication in the Astrophysical Journal
Cited by in corpus (52)
- Pulsating white dwarfs: new insights
- Toward ensemble asteroseismology of ZZ Ceti stars with fully evolutionary models
- On the evolution of ultra-massive white dwarfs
- Testing White Dwarf Crystallization Theory with Asteroseismology of the Massive Pulsating DA Star BPM 37093
- New evolutionary models for massive ZZ Ceti stars: I. First results for their pulsational properties
- Measuring the evolution of the most stable optical clock G 117-B15A
- Gravitational Settling of ^{22}Ne in Liquid White Dwarf Interiors--Cooling and Seismological Effects
- Whole Earth Telescope observations of BPM 37093: a seismological test of crystallization theory in white dwarfs
- The core/envelope symmetry in pulsating stars
- Asteroseismological study of massive ZZ Ceti stars with fully evolutionary models
- Re-defining the Empirical ZZ Ceti Instability Strip
- Genetic-Algorithm-based Asteroseismological Analysis of the DBV White Dwarf GD 358
- Discovery of an ultramassive pulsating white dwarf
- The formation of ultra-massive carbon-oxygen core white dwarfs and their evolutionary and pulsational properties
- Non-radial Oscillations in Rotating Giant Planets with Solid Cores: Application to Saturn and its Rings
- Four New Massive Pulsating White Dwarfs Including an Ultramassive DAV
- Discovery of fourteen new ZZ Cetis with SOAR
- New evolutionary models for massive ZZ Ceti stars. II. The effects of crystallization on their pulsational properties
- Pulsations of massive ZZ Ceti stars with carbon/oxygen and oxygen/neon cores
- New developments of the ZZ Ceti instability strip: The discovery of eleven new variables
- The white dwarf mass-radius relation and its dependence on the hydrogen envelope
- Seismology of the Accreting White Dwarf in GW Lib
- Elastic properties of polycrystalline dense matter
- Pulsation properties of ultra-massive DA white dwarf stars with ONe cores
- White dwarf envelopes: further results of a non-local model of convection
- Neutron Star Crustal Interface Waves
- On the recent parametric determination of an asteroseismological model for the DBV star KIC 08626021
- Probing the structure of Kepler ZZ Ceti stars with full evolutionary models-based asteroseismology
- Time dependent diffusion in pulsating white dwarf stars: Asteroseismology of G117-B15A
- Asteroseismological analysis of the ultra-massive ZZ Ceti stars BPM~37093, GD~518, and SDSS~J0840+5222
- Cooling Delays from Iron Sedimentation and Iron Inner Cores in White Dwarfs
- Multi-site Observations of Pulsation in the Accreting White Dwarf SDSS J161033.64-010223.3 (V386 Ser)
- The pulsating white dwarf G117-B15A: still the most stable optical clock known
- Carbon-oxygen ultra-massive white dwarfs in general relativity
- The Properties of Matter in White Dwarfs and Neutron Stars
- Asteroseismology of Pulsating Stars
- The pulsating DA white dwarf star EC 14012-1446: results from four epochs of time-resolved photometry
- The composition of massive white dwarfs and their dependence on the C-burning modeling
- Asteroseismology of PG 1541651 and BPM 31594 with TESS
- Energy of Quantum Coulomb Liquid
- The impact of Coulomb diffusion of ions on the pulsational properties of DA white dwarfs
- Oscillations and tidal deformations of crystallized white dwarfs
- The pulsational properties of ultra-massive DB white dwarfs with carbon-oxygen cores coming from single-star evolution
- The gravitational wave radiation of pulsating white dwarfs revisited: the case of BPM 37093 and PG 1159-035
- An observer's view on the future of asteroseismology
- Modeling Solids in Nuclear Astrophysics with Smoothed Particle Hydrodynamics
- Three-component Phase Separation for Ultramassive White Dwarf Models
- Seismology and diffusion of ultramassive white dwarf magnetic fields
- The dispersion of period spacing for DAV stars
- Lessons for Asteroseismology from White Dwarf Stars
- A white dwarf-neutron star relativistic binary model for soft gamma-ray repeaters
- An origin for the main pulsation and overtones of SGR1900+14 during the August 27 (1998) superoutburst