The formation of ultra-massive carbon-oxygen core white dwarfs and their evolutionary and pulsational properties
arXiv:2011.10439 · doi:10.1051/0004-6361/202038930
Abstract
(Abridged abstract) We explore the formation of ultra-massive (M_{\rm WD} \gtrsim 1.05 M_\sun$), carbon-oxygen core white dwarfs resulting from single stellar evolution. We also study their evolutionary and pulsational properties and compare them with those of the ultra-massive white dwarfs with oxygen-neon cores resulting from carbon burning in single progenitor stars, and with binary merger predictions. We consider two single-star evolution scenarios for the formation of ultra-massive carbon-oxygen core white dwarfs that involve rotation of the degenerate core after core helium burning and reduced mass-loss rates in massive asymptotic giant-branch stars. We compare our findings with the predictions from ultra-massive white dwarfs resulting from the merger of two equal-mass carbon-oxygen core white dwarfs, by assuming complete mixing between them and a carbon-oxygen core for the merged remnant. The resulting ultra-massive carbon-oxygen core white dwarfs evolve markedly slower than their oxygen-neon counterparts. Our study strongly suggests the formation of ultra-massive white dwarfs with carbon-oxygen core from single stellar evolution. We find that both the evolutionary and pulsation properties of these white dwarfs are markedly different from those of their oxygen-neon core counterparts and from those white dwarfs with carbon-oxygen core that might result from double degenerate mergers. This can eventually be used to discern the core composition of ultra-massive white dwarfs and their formation scenario.
15 pages, 10 figures, 2 tables. To be published in Astronomy and Astrophysics
References in corpus (28)
- Modules for Experiments in Stellar Astrophysics (MESA): Pulsating Variable Stars, Rotation, Convective Boundaries, and Energy Conservation
- The Dawes Review 2: Nucleosynthesis and stellar yields of low and intermediate-mass single stars
- Pulsating White Dwarf Stars and Precision Asteroseismology
- The Supernova Channel of Super-AGB Stars
- Constraining the thermally-pulsing asymptotic giant branch phase with resolved stellar populations in the Small Magellanic Cloud
- Super and massive AGB stars - III. Nucleosynthesis in metal-poor and very metal-poor stars - Z=0.001 and 0.0001
- Asteroseismic inferences on GW Vir variable stars in the frame of new PG 1159 evolutionary models
- White dwarf evolutionary sequences for low-metallicity progenitors: The impact of third dredge-up
- Carbon star formation as seen through the non-monotonic initial-final mass relation
- Evolutionary Models for the Remnant of the Merger of Two Carbon-Oxygen Core White Dwarfs
- Luminosities and mass-loss rates of Local Group AGB stars and Red Supergiants
- Low temperature Rosseland opacities with varied abundances of carbon and nitrogen
- Carbon-enhanced metal-poor stars: a window on AGB nucleosynthesis and binary evolution. I. Detailed analysis of 15 binary stars with known orbital periods
- On Carbon Burning in Super Asymptotic Giant Branch Stars
- An ultra-massive white dwarf with a mixed hydrogen-carbon atmosphere as a likely merger remnant
- The TP-AGB phase. Lifetimes from C and M star counts in Magellanic Cloud clusters
- Diffusion of Neon in White Dwarf Stars
- The evolution of DARWIN: current status of wind models for AGB stars
- An extensive grid of DARWIN models for M-type AGB stars I. Mass-loss rates and other properties of dust-driven winds
- Detections and Constraints on White Dwarf Variability from Time-Series GALEX Observations
- A Novel Approach to Constrain Rotational Mixing & Convective-Core Overshoot in Stars Using the Initial-Final Mass Relation
- Evolution of rotation in rapidly rotating early-type stars during the main sequence with 2D models
- 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
- An in-depth reanalysis of the alleged type Ia supernova progenitor Henize 2-428
- Rayleigh scattering in dense fluid helium
- Impact of Convective Boundary Mixing on the TP-AGB
- On the role of reduced wind mass-loss rate in enabling exoplanets to shape planetary nebulae
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- Current challenges in the physics of white dwarf stars
- Ne Phase Separation As A Solution To The Ultramassive White Dwarf Cooling Anomaly
- Formation of ultra-massive carbon-oxygen white dwarfs from the merger of carbon-oxygen and helium white dwarf pairs
- The evolution of ultra-massive carbon oxygen white dwarfs
- Structure and evolution of ultra-massive white dwarfs in general relativity
- Phase Separation in Ultramassive White Dwarfs
- Can we reveal the core-chemical composition of ultra-massive white dwarfs through their magnetic fields?
- On The Impact Of 22Ne On The Pulsation Periods Of Carbon-Oxygen White Dwarfs With Helium Dominated Atmospheres
- Cooling Models for the Most Massive White Dwarfs
- The composition of massive white dwarfs and their dependence on the C-burning modeling
- The pulsational properties of ultra-massive DB white dwarfs with carbon-oxygen cores coming from single-star evolution