Asymmetry and the Nucleosynthetic Signature of Nearly Edge-Lit Detonation in White Dwarf Cores
arXiv:1103.3062 · doi:10.1088/0004-637X/744/1/27
Abstract
Most of the leading explosion scenarios for Type Ia supernovae involve the nuclear incineration of a white dwarf star through a detonation wave. Several scenarios have been proposed as to how this detonation may actually occur, but the exact mechanism and environment in which it takes place remain unknown. We explore the effects of an off-center initiated detonation on the spatial distribution of the nucleosynthetic yield products in a toy model -- a pre-expanded near Chandrasekhar-mass white dwarf. We find that a single-point near edge-lit detonation results in asymmetries in the density and thermal profiles, notably the expansion timescale, throughout the supernova ejecta. We demonstrate that this asymmetry of the thermodynamic trajectories should be common to off-center detonations where a small amount of the star is burned prior to detonation. The sensitivity of the yields on the expansion timescale results in an asymmetric distribution of the elements synthesized as reaction products. We tabulate the shift in the center of mass of the various elements produced in our model supernova and find an odd-even pattern for elements past silicon. Our calculations show that off-center single-point detonations in carbon-oxygen white dwarfs are marked by significant composition asymmetries in their remnants which bear potentially observable signatures in both velocity and coordinate space, including an elemental nickel mass fraction which varies by a factor of two to three from one side of the remnant to the other.
7 pages, 7 figures, accepted for publication in the Astrophysical Journal
References in corpus (11)
- Double-detonation sub-Chandrasekhar supernovae: can minimum helium shell masses detonate the core?
- A Common Explosion Mechanism for Type Ia Supernovae
- Double-detonation sub-Chandrasekhar supernovae: synthetic observables for minimum helium shell mass models
- An asymmetric explosion as the origin of spectral evolution diversity in type Ia supernovae
- Capturing the Fire: Flame Energetics and Neutronizaton for Type Ia Supernova Simulations
- The Reduction of the Electron Abundance during the Pre-explosion Simmering in White Dwarf Supernovae
- Metallicity as a source of dispersion in the SNIa bolometric light curve luminosity-width relationship
- Off-center explosions of Chandrasekhar-mass white dwarfs: an explanation of super-bright type Ia supernovae?
- Evaluating Systematic Dependencies of Type Ia Supernovae: The Influence of Deflagration to Detonation Density
- Light curves for off-centre ignition models of type Ia supernovae
- Initiation of the detonation in the gravitationally confined detonation model of Type Ia supernovae
Cited by in corpus (8)
- The nucleosynthetic history of elements in the Galactic disk: [X/Fe] - age relations from high-precision spectroscopy
- On the fate of the secondary white dwarf in double-degenerate double-detonation Type Ia supernovae
- Three-dimensional simulations of gravitationally confined detonations compared to observations of SN 1991T
- Power-Law Wrinkling Turbulence-Flame Interaction Model for Astrophysical Flames
- On Silicon Group Elements Ejected by Supernovae Type Ia
- Type Ia Supernova Models: Asymmetric Remnants and Supernova Remnant G1.9+0.3
- Merging White Dwarf Binaries Produce Type Ia Supernovae in Elliptical Galaxies
- The Effect of the Pre-Detonation Stellar Internal Velocity Profile on the Nucleosynthetic Yields in Type Ia Supernova