56Ni Production in Double Degenerate White Dwarf Collisions
arXiv:1009.2507 · doi:10.1088/0004-637X/724/1/111
Abstract
We present a comprehensive study of white dwarf collisions as an avenue for creating type Ia supernovae. Using a smooth particle hydrodynamics code with a 13-isotope, α-chain nuclear network, we examine the resulting 56Ni yield as a function of total mass, mass ratio, and impact parameter. We show that several combinations of white dwarf masses and impact parameters are able to produce sufficient quantities of 56Ni to be observable at cosmological distances. We find the 56Ni production in double-degenerate white dwarf collisions ranges from sub-luminous to the super-luminous, depending on the parameters of the collision. For all mass pairs, collisions with small impact parameters have the highest likelihood of detonating, but 56Ni production is insensitive to this parameter in high-mass combinations, which significantly increases their likelihood of detection. We also find that the 56Ni dependence on total mass and mass ratio is not linear, with larger mass primaries producing disproportionately more 56Ni than their lower mass secondary counterparts, and symmetric pairs of masses producing more 56Ni than asymmetric pairs.
21 pages, 21 figures; ApJ in press
References in corpus (4)
Cited by in corpus (59)
- Observational clues to the progenitors of Type-Ia supernovae
- The Evolution of Compact Binary Star Systems
- Progenitors of type Ia supernovae
- Accelerating Compact Object Mergers in Triple Systems with the Kozai Resonance: A Mechanism for "Prompt" Type Ia Supernovae, Gamma-Ray Bursts, and Other Exotica
- Head-on collisions of white dwarfs in triple systems could explain type Ia supernova
- On the Progenitors of Type Ia Supernovae
- Type Ia Supernova Explosions in Binary Systems: A Review
- Type Ia supernova bolometric light curves and ejected mass estimates from the Nearby Supernova Factory
- A Unified Mechanism for Unconfined Deflagration-to-Detonation Transition in Terrestrial Chemical Systems and Type Ia Supernovae
- The ejected mass distribution of type Ia supernovae: A significant rate of non-Chandrasekhar-mass progenitors
- Mass-accreting white dwarfs and type Ia supernovae
- Exploring the Potential Diversity of Early Type Ia Supernova Light Curves
- Remnants of Binary White Dwarf Mergers
- Population synthesis of triple systems in the context of mergers of carbon-oxygen white dwarfs
- CRKSPH - A Conservative Reproducing Kernel Smoothed Particle Hydrodynamics Scheme
- Tidal Tail Ejection as a Signature of Type~Ia Supernovae from White Dwarf Mergers
- Type Ia Supernovae with Bi-Modal Explosions Are Common -- Possible Smoking Gun for Direct Collisions of White-Dwarfs
- Greatly Enhanced Eccentricity Oscillations in Quadruple Systems Composed of Two Binaries: Implications for Stars, Planets, and Transients
- The rate of WD-WD head-on collisions in isolated triples is too low to explain standard type Ia supernovae
- A Search for New Candidate Super-Chandrasekhar-Mass Type Ia Supernovae in the Nearby Supernova Factory Dataset
- Dynamical formation & scattering of hierarchical triples: Cross sections, Kozai-Lidov oscillations, and collisions
- New approaches to SNe Ia progenitors
- Probing type Ia supernova properties using bolometric light curves from the Carnegie Supernova Project and the CfA Supernova Group
- Three-Dimensional Simulation of Double-Detonations in the Double-Degenerate Model for Type Ia Supernovae and Interaction of Ejecta with a Surviving White Dwarf Companion
- Observational evidence for high neutronization in supernova remnants: implications for Type Ia supernova progenitors
- Keck Observations of the Young Metal-Poor Host Galaxy of the Super-Chandrasekhar-Mass Type Ia Supernova SN 2007if
- Reconciling 56Ni Production in Type Ia Supernovae with Double Degenerate Scenarios
- On the rates of type Ia supernovae originating from white dwarf collisions in quadruple star systems
- High resolution simulations of the head-on collision of white dwarfs
- Detonations in white dwarf dynamical interactions
- Zero Impact Parameter White Dwarf Collisions in FLASH
- Stable nickel production in Type Ia supernovae: A smoking gun for the progenitor mass?
- The impact of white dwarf natal kicks and stellar flybys on the rates of Type Ia supernovae in triple-star systems
- The nebular spectra of the transitional Type Ia Supernovae 2007on and 2011iv: broad, multiple components indicate aspherical explosion cores
- Supernovae from direct collisions of white dwarfs and the role of helium shell ignition
- Early ultraviolet emission in the Type Ia supernova LSQ12gdj: No evidence for ongoing shock interaction
- Constraining The Single-Degenerate Channel of Type Ia Supernovae With Stable Iron-Group Elements in SNR 3C 397
- Does Explosive Nuclear Burning occur in Tidal Disruption Events of White Dwarfs by Intermediate Mass Black Holes ?
- A Significantly off-center Ni56 Distribution for the Low-Luminosity Type Ia Supernova SN 2016brx from the 100IAS survey
- Signatures of Bimodality in Nebular Phase Type Ia Supernova Spectra
- On the possible observational signatures of white dwarf dynamical interactions
- Type Ia Supernova Nucleosynthesis: Metallicity-Dependent Yields
- A Comparison of Grid-Based and SPH Binary Mass-Transfer and Merger Simulations
- The Way To a Double Degenerate: per cent of Stars have a Companion
- Numerical Stability of Detonations in White Dwarf Simulations
- Extreme close approaches in hierarchical triple systems with comparable masses
- White Dwarf--White Dwarf collisions in AGN discs via close encounters
- Examining the Accuracy of Astrophysical Disk Simulations With a Generalized Hydrodynamical Test Problem
- Early Hydrodynamic Evolution of a Stellar Collision
- White dwarf dynamical interactions and fast optical transients
- Shadows of our Former Companions: How the Single-Degenerate Binary Type Ia Supernova Scenario Affects Remnants
- X-ray Limits on the Progenitor System of the Type Ia Supernova 2017ejb
- Polarization signatures of the head-on collision model for Type Ia supernovae: How much asymmetry is too much?
- An asymmetric explosion mechanism may explain the diversity of Si II line widths in Type Ia supernovae
- Merging White Dwarf Binaries Produce Type Ia Supernovae in Elliptical Galaxies
- SPH Methods in the Modelling of Compact Objects
- Synthesis of radioactive elements in novae and supernovae and their use as a diagnostic tool
- Can helium envelopes change the outcome of direct white dwarf collisions?
- Thermonuclear explosion criteria for direct and indirect collisions of CO white dwarfs: a study of the impact-parameter threshold for detonation