Surface and core detonations in rotating white dwarfs
arXiv:1801.10398 · doi:10.3847/1538-4357/aacb7d
Abstract
The feasibility of the Double Detonation mechanism, -a surface Helium-detonation followed by the complete carbon detonation of the core-, in a rotating white dwarf with a mass is studied using three-dimensional hydrodynamic simulations. Assuming rigid rotation, the rotational speed is taken high enough as to considerably distort the initial spherical geometry of the white dwarf. Unlike spherically symmetric models, we found that when helium ignition is located far from the spinning axis the detonation fronts converge asynchronically at the antipodes of the igniting point. Nevertheless, the detonation of the carbon core still remains as the most probable outcome. The detonation of the core gives rise to a strong explosion, matching many of the basic observational constraints of Type Ia Supernova. We conclude that the Double Detonation mechanism also works when the white dwarf is spinning fast. This confirms the sub-Chandrasekhar-mass models and, maybe some Double Degenerate models (those having some helium fuel at the merging moment), as appealing channels to produce Type Ia Supernova events.
13 pages, 13 figures, 6 tables, submitted to ApJ
References in corpus (14)
- SPLASH: An interactive visualisation tool for Smoothed Particle Hydrodynamics simulations
- Double-detonation sub-Chandrasekhar supernovae: can minimum helium shell masses detonate the core?
- Faint Thermonuclear Supernovae from AM Canum Venaticorum Binaries
- Spectropolarimetry of Supernovae
- Double-detonation supernovae of sub-Chandrasekhar mass white dwarfs
- The Initiation and Propagation of Helium Detonations in White Dwarf Envelopes
- A hybrid type Ia supernova with an early flash triggered by helium-shell detonation
- Evidence for sub-Chandrasekhar-mass progenitors of Type Ia supernovae at the faint end of the width-luminosity relation
- Light and color curve properties of type Ia supernovae: Theory vs. Observations
- The Internal Shear of Type Ia Supernova Progenitors During Accretion and Simmering
- Predicting polarization signatures for double-detonation and delayed-detonation models of Type Ia supernovae
- Light curves for off-centre ignition models of type Ia supernovae
- A young contracting white dwarf in the peculiar binary HD 49798/RX J0648.0--4418?
- Differentially Rotating White Dwarfs I: Regimes of Internal Rotation
Cited by in corpus (9)
- Observational Predictions for Sub-Chandrasekhar Mass Explosions: Further Evidence for Multiple Progenitor Systems for Type Ia Supernovae
- SNe Ia from double detonations: Impact of core-shell mixing on the carbon ignition mechanism
- Multi-Dimensional Parameter Study of Double Detonation Type Ia Supernovae Originating from Thin-Helium-Shell White Dwarfs
- White dwarfs in de Rham-Gabadadze-Tolley like massive gravity
- The Evolution of Helium Star Plus Carbon-Oxygen White Dwarf Binary Systems and Implications for Diverse Stellar Transients and Hypervelocity Stars
- Exploration of Aspherical Ejecta Properties in Type Ia Supernova: Progenitor Dependence and Applications to Progenitor Classification
- Properties and applications of a predicted population of runaway He-sdO/B stars ejected from single degenerate He-donor SNe
- Self-gravitating barotropic equilibrium configurations of rotating bodies with SPH
- Local two-dimensional simulations of the ignition of a helium shell detonation on a white dwarf by an impacting stream