Evolutionary Models for the Remnant of the Merger of Two Carbon-Oxygen Core White Dwarfs
arXiv:2011.03546 · doi:10.3847/1538-4357/abc87e
Abstract
We construct evolutionary models of the remnant of the merger of two carbon-oxygen (CO) core white dwarfs (WDs). With total masses in the range , these remnants may either leave behind a single massive WD or undergo a merger-induced collapse to a neutron star (NS). On the way to their final fate, these objects generally experience a kyr luminous giant phase, which may be extended if sufficient helium remains to set up a stable shell-burning configuration. The uncertain, but likely significant, mass loss rate during this phase influences the final remnant mass and fate (WD or NS). We find that the initial CO core composition of the WD is converted to oxygen-neon (ONe) in remnants with final masses . This implies that the CO core / ONe core transition in single WDs formed via mergers occurs at a similar mass as in WDs descended from single stars, and thus that WD-WD mergers do not naturally provide a route to producing ultra-massive CO-core WDs. As the remnant contracts towards a compact configuration, it experiences a "bottleneck" that sets the characteristic total angular momentum that can be retained. This limit predicts single WDs formed from WD-WD mergers have rotational periods of min on the WD cooling track. Similarly, it predicts remnants that collapse can form NSs with rotational periods ms.
18 pages, 16 figures; Accepted to ApJ
References in corpus (11)
- Modules for Experiments in Stellar Astrophysics (MESA)
- Modules for Experiments in Stellar Astrophysics (MESA): Pulsating Variable Stars, Rotation, Convective Boundaries, and Energy Conservation
- Slowing the Spins of Stellar Cores
- Super and massive AGB stars - IV. Final fates - Initial to final mass relation
- White Dwarf Rotation as a Function of Mass and a Dichotomy of Mode Linewidths: Kepler Observations of 27 Pulsating DA White Dwarfs Through K2 Campaign 8
- Hot DQ White Dwarfs: Something Different
- The Viscous Evolution of White Dwarf Merger Remnants
- An ultra-massive white dwarf with a mixed hydrogen-carbon atmosphere as a likely merger remnant
- A massive white-dwarf merger product before final collapse
- Evolutionary models for R Coronae Borealis stars
- On the angular momentum evolution of merged white dwarfs
Cited by in corpus (48)
- Type Ia Supernova Explosions in Binary Systems: A Review
- A highly magnetised and rapidly rotating white dwarf as small as the Moon
- Ne Phase Separation As A Solution To The Ultramassive White Dwarf Cooling Anomaly
- Implications of a rapidly varying FRB in a globular cluster of M81
- Stellar triples on the edge; Comprehensive overview of the evolution of destabilised triples leading to stellar and binary exotica
- Dynamical Formation Channels for Fast Radio Bursts in Globular Clusters
- White Dwarf Subsystems in Core-Collapsed Globular Clusters
- An Isolated White Dwarf with a 70 second Spin Period
- Resolving The Peak Of The Black Hole Mass Spectrum
- The formation of ultra-massive carbon-oxygen core white dwarfs and their evolutionary and pulsational properties
- The Most Massive White Dwarfs in the Solar Neighborhood
- Buoyant crystals halt the cooling of white dwarf stars
- The Merger Fraction of Ultramassive White Dwarfs
- Connecting the Young Pulsars in Milky Way Globular Clusters with White Dwarf Mergers and the M81 Fast Radio Burst
- Stellar graveyards: Clustering of compact objects in globular clusters NGC 3201 and NGC 6397
- Constraining the nature of the 18-min periodic radio transient GLEAM-X J162759.5-523504.3 via multi-wavelength observations and magneto-thermal simulations
- Formation of ultra-massive carbon-oxygen white dwarfs from the merger of carbon-oxygen and helium white dwarf pairs
- Prospects for Detecting Fast Radio Bursts in Globular Clusters of Nearby Galaxies
- The evolution of ultra-massive carbon oxygen white dwarfs
- Structure and evolution of ultra-massive white dwarfs in general relativity
- Formation of Low-mass Black Holes and Single Millisecond Pulsars in Globular Clusters
- A new study on a type Iax stellar remnant and its probable association with SN 1181
- Phase Separation in Ultramassive White Dwarfs
- The Cooling of Massive White Dwarfs from Gaia EDR3
- The non-explosive stellar merging origin of the ultra-massive carbon-rich white dwarfs
- FAST Discovery of Eight Isolated Millisecond Pulsars in NGC 6517
- WD J004917.14252556.81, the Most Massive Pulsating White Dwarf
- Can we reveal the core-chemical composition of ultra-massive white dwarfs through their magnetic fields?
- The Rapid Rotation of the Strongly Magnetic Ultramassive White Dwarf EGGR 156
- A Roche Lobe-filling hot Subdwarf and White Dwarf Binary: possible detection of an ejected common envelope
- Carbon-oxygen ultra-massive white dwarfs in general relativity
- Lower-mass-gap Black Holes in Dense Star Clusters
- Cooling Models for the Most Massive White Dwarfs
- The double white dwarf merger progenitors of SDSS J2211+1136 and ZTF J1901+1458
- Single Millisecond Pulsars from Dynamical Interaction Processes in Dense Star Clusters
- One-Dimensional Numerical Study on Ignition of the Helium Envelope in Dynamical Accretion during the Double-Degenerate Merger
- Predicting the rate of fast radio bursts in globular clusters from binary black hole observations
- Observational Signatures of Carbon-Oxygen White Dwarf Merger Remnants
- The pulsational properties of ultra-massive DB white dwarfs with carbon-oxygen cores coming from single-star evolution
- A half-ring of ionized circumstellar material trapped in the magnetosphere of a white dwarf merger remnant
- Gravitational Collapse of White Dwarfs to Neutron Stars. I. From Initial Conditions to Explosions with Neutrino-radiation Hydrodynamics Simulations
- Stellar evolution, SN explosion, and nucleosynthesis
- Revealing Double White Dwarf Mergers with Multi-messenger Signals
- Seismology and diffusion of ultramassive white dwarf magnetic fields
- How an overweight and rapidly rotating PG 1159 star in the Galactic halo challenges evolutionary models
- Violent mergers revisited: The origin of the fastest stars in the Galaxy
- The final fates of close hot subdwarf - white dwarf binaries: mergers involving He/C/O white dwarfs and the formation of unusual giant stars with C/O-dominated envelopes
- Discovery of the first outbursting hot subdwarf binary: ZTF J0007+4804