White dwarf evolutionary sequences for low-metallicity progenitors: The impact of third dredge-up
arXiv:1502.03882 · doi:10.1051/0004-6361/201424922
Abstract
We present new white dwarf evolutionary sequences for low-metallicity progenitors. White dwarf sequences have been derived from full evolutionary calculations that take into account the entire history of progenitor stars, including the thermally-pulsing and the post-asymptotic giant branch phases. We show that for progenitor metallicities in the range 0.00003--0.001, and in the absence of carbon enrichment due to the occurrence of a third dredge-up episode, the resulting H envelope of the low-mass white dwarfs is thick enough to make stable H burning the most important energy source even at low luminosities. This has a significant impact on white dwarf cooling times. This result is independent of the adopted mass-loss rate during the thermally-pulsing and post-AGB phases, and the planetary nebulae stage. We conclude that in the absence of third dredge-up episodes, a significant part of the evolution of low-mass white dwarfs resulting from low-metallicity progenitors is dominated by stable H burning. Our study opens the possibility of using the observed white dwarf luminosity function of low-metallicity globular clusters to constrain the efficiency of third dredge up episodes during the thermally-pulsing AGB phase of low-metallicity progenitors.
To be published in Astronomy and Astrophysics. 12 pages, 11 figures
References in corpus (6)
- Updated Electron-Conduction Opacities: The Impact on Low-Mass Stellar Models
- Pulsating White Dwarf Stars and Precision Asteroseismology
- Modeling He-rich subdwarfs through the hot-flasher Scenario
- The Physics of Crystallization from Globular Cluster White Dwarf Stars in NGC 6397
- Gravitational settling of 22Ne and white dwarf evolution
- Short-period -mode pulsations in low-mass white dwarfs triggered by H shell burning
Cited by in corpus (29)
- White dwarf and subdwarf stars in the Sloan Digital Sky Survey Data Release 14
- The white dwarf luminosity function
- The formation of ultra-massive carbon-oxygen core white dwarfs and their evolutionary and pulsational properties
- Asteroseismology of ZZ Ceti stars with fully evolutionary white dwarf models: I. The impact of the uncertainties from prior evolution on the period spectrum
- From Hydrogen to Helium: The Spectral Evolution of White Dwarfs as Evidence for Convective Mixing
- Random Forest identification of the thin disk, thick disk and halo Gaia-DR2 white dwarf population
- Constraining the solar neighbourhood age-metallicity relation from white dwarf-main sequence binaries
- The Gaia DR2 halo white dwarf population: the luminosity function, mass distribution and its star formation history
- A population synthesis fitting of the resolved white dwarf binary population within 100 pc
- Detection of a White Dwarf companion to a Blue Straggler Star in the outskirts of globular cluster NGC 5466 with the Ultraviolet Imaging Telescope (UVIT)
- The evolution of white dwarfs resulting from helium-enhanced, low-metallicity progenitor stars
- The evolution of ultra-massive carbon oxygen white dwarfs
- Discovery of a Detached, Eclipsing 40 min Period Double White Dwarf Binary and a Friend: Implications for He+CO White Dwarf Mergers
- Structure and evolution of ultra-massive white dwarfs in general relativity
- Slowly cooling white dwarfs in M13 from stable hydrogen burning
- 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 the existence of warm H-rich pulsating white dwarfs
- Can we reveal the core-chemical composition of ultra-massive white dwarfs through their magnetic fields?
- Pulsating low-mass white dwarfs in the frame of new evolutionary sequences: V. Asteroseismology of ELMV white dwarf stars
- Carbon-oxygen ultra-massive white dwarfs in general relativity
- The HST large programme on NGC 6752 -- IV. The White Dwarf Sequence
- The composition of massive white dwarfs and their dependence on the C-burning modeling
- Gaia0007-1605: an old triple system with an inner brown dwarf-white dwarf binary and an outer white dwarf companion
- Investigating the UV-excess in star clusters with -body simulations: predictions for future CSST observations
- The pulsational properties of ultra-massive DB white dwarfs with carbon-oxygen cores coming from single-star evolution
- Exploring the internal rotation of the extremely low-mass He-core white dwarf GD 278 with TESS asteroseismology
- Globular Cluster UVIT Legacy Survey (GlobULeS) II. Evolutionary status of hot stars in M3 and M13
- A new instability domain of CNO-flashing low-mass He-core stars on their early white-dwarf cooling branches