How the merger of two white dwarfs depends on their mass ratio: orbital stability and detonations at contact
arXiv:1201.2406 · doi:10.1111/j.1365-2966.2012.20794.x
Abstract
Despite their unique astrophysical relevance, the outcome of white dwarf binary mergers has so far only been studied for a very restricted number of systems. Here we present the results of a survey with more than two hundred simulations systematically scanning the white dwarf binary parameter space. We consider white dwarf masses ranging from 0.2 to 1.2 and account for their different chemical compositions. We find excellent agreement with the orbital evolution predicted by mass transfer stability analysis. Much of our effort in this paper is dedicated to determining which binary systems are prone to a thermonuclear explosion just prior to merger or at surface contact. We find that a large fraction of He-accreting binary systems explode: all dynamically unstable systems with accretor masses below 1.1 and donor masses above 0.4 are found to trigger a helium detonation at surface contact. A substantial fraction of these systems could explode at earlier times via detonations induced by instabilities in the accretion stream, as we have demonstrated in our previous work. We do not find definitive evidence for an explosion prior to merger or at surface contact in any of the studied double carbon-oxygen systems. Although we cannot exclude their occurrence if some helium is present, the available parameter space for a successful detonation in a white dwarf binary of pure carbon-oxygen composition is small. We demonstrate that a wide variety of dynamically unstable systems are viable type Ia candidates. The next decade thus holds enormous promise for the study of these events, in particular with the advent of wide-field synoptic surveys allowing a detailed characterization of their explosive properties.
13 pages, 10 figures, submitted to MNRAS
References in corpus (19)
- Improved Dark Energy Constraints from ~100 New CfA Supernova Type Ia Light Curves
- The type Ia supernova SNLS-03D3bb from a super-Chandrasekhar-mass white dwarf star
- CfA3: 185 Type Ia Supernova Light Curves from the CfA
- Supernova 2011fe from an Exploding Carbon-Oxygen White Dwarf Star
- Faint Thermonuclear Supernovae from AM Canum Venaticorum Binaries
- Constraints on the Progenitor System of the Type Ia Supernova SN 2011fe/PTF11kly
- A Compact Degenerate Primary-Star Progenitor of SN 2011fe
- Double-detonation supernovae of sub-Chandrasekhar mass white dwarfs
- The Long-Term Evolution of Double White Dwarf Mergers
- Type Ia Supernovae as Stellar Endpoints and Cosmological Tools
- Astrophysical Smooth Particle Hydrodynamics
- Unstable Helium Shell Burning on Accreting White Dwarfs
- Early radio and X-ray observations of the youngest nearby type Ia supernova PTF11kly (SN 2011fe)
- Remnants of Binary White Dwarf Mergers
- Flame Evolution During Type Ia Supernovae and the Deflagration Phase in the Gravitationally Confined Detonation Scenario
- Evolution of Close White Dwarf Binaries
- The Stability of Double White Dwarf Binaries Undergoing Direct Impact Accretion
- Tidal Interactions in Merging White Dwarf Binaries
- Simulating Black Hole White Dwarf Encounters
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