Do R Coronae Borealis Stars Form from Double White Dwarf Mergers?
arXiv:1208.0732 · doi:10.1088/0004-637X/757/1/76
Abstract
A leading formation scenario for R Coronae Borealis (RCB) stars invokes the merger of degenerate He and CO white dwarfs (WD) in a binary. The observed ratio of 16O/18O for RCB stars is in the range of 0.3-20 much smaller than the solar value of ~500. In this paper, we investigate whether such a low ratio can be obtained in simulations of the merger of a CO and a He white dwarf. We present the results of five 3-dimensional hydrodynamic simulations of the merger of a double white dwarf system where the total mass is 0.9 Mdot and the initial mass ratio (q) varies between 0.5 and 0.99. We identify in simulations with a feature around the merged stars where the temperatures and densities are suitable for forming 18O. However, more 16O is being dredged-up from the C- and O-rich accretor during the merger than the amount of 18O that is produced. Therefore, on a dynamical time scale over which our hydrodynamics simulation runs, a 16O/18O ratio of ~2000 in the "best" case is found. If the conditions found in the hydrodynamic simulations persist for 10^6 seconds the oxygen ratio drops to 16 in one case studied, while in a hundred years it drops to ~4 in another case studied, consistent with the observed values in RCB stars. Therefore, the merger of two white dwarfs remains a strong candidate for the formation of these enigmatic stars.
42 pages, 19 figures. Accepted for publication in the Astrophysical Journal
References in corpus (4)
Cited by in corpus (31)
- The impact of companions on stellar evolution
- Ne Phase Separation As A Solution To The Ultramassive White Dwarf Cooling Anomaly
- Post-merger evolution of carbon-oxygen + helium white dwarf binaries and the origin of R Coronae Borealis and extreme helium stars
- Multi-Gigayear White Dwarf Cooling Delays from Clustering-Enhanced Gravitational Sedimentation
- Toward Precision Cosmochronology: A New C/O Phase Diagram for White Dwarfs
- The ongoing pursuit of R Coronae Borealis stars: ASAS-3 survey strikes again
- Forever young white dwarfs: when stellar ageing stops
- Reproducing the observed abundances in RCB and HdC stars with post-double degenerate merger models - constraints on merger and post-merger simulations and physics processes
- Evolutionary models for R Coronae Borealis stars
- Evolving R Coronae Borealis Stars with MESA
- Hydrogen in hot subdwarfs formed by double helium white dwarf mergers
- A plethora of new R Coronae Borealis stars discovered from a dedicated spectroscopic follow-up survey
- Formation of ultra-massive carbon-oxygen white dwarfs from the merger of carbon-oxygen and helium white dwarf pairs
- Helium ignition in rotating magnetized CO white dwarfs leading to fast and faint rather than classical type Ia supernovae
- The evolution of ultra-massive carbon oxygen white dwarfs
- Dust around R Coronae Borealis stars: II. Infrared emission features in a H-poor environment
- Modeling R Coronae Borealis Stars: Effects of He-Burning Shell Temperature and Metallicity
- Observations and three-dimensional photoionization modelling of the Wolf-Rayet planetary nebula Abell 48
- R Coronae Borealis Star Evolution: Simulating 3D Merger Events to 1D Stellar Evolution Including Large Scale Nucleosynthesis
- The role of dredge-up in double white dwarf mergers
- A Comparison of Grid-Based and SPH Binary Mass-Transfer and Merger Simulations
- R Coronae Borealis and dustless Hydrogen-deficient Carbon stars have different oxygen isotope ratios
- R Coronae Borealis Stars in M31 from the Palomar Transient Factory
- A Hybrid Advection Scheme for Conserving Angular Momentum on a Refined Cartesian Mesh
- Observational Signatures of Carbon-Oxygen White Dwarf Merger Remnants
- Subaru/HDS study of HE 1015-2050: Spectral evidence of R Coronae Borealis light decline
- Hydrodynamic simulations of WD-WD mergers and the origin of RCB stars
- The RCB star V854 Cen is surrounded by a hot dusty shell
- Merged white dwarfs and nucleosynthesis
- Asynchronous-Many-Task Systems: Challenges and Opportunities -- Scaling an AMR Astrophysics Code on Exascale machines using Kokkos and HPX
- 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