Type Ia supernova diversity: white dwarf central density as a secondary parameter in three-dimensional delayed detonation models
arXiv:1012.4929 · doi:10.1111/j.1365-2966.2011.18588.x
Abstract
Delayed detonations of Chandrasekhar-mass white dwarfs (WDs) have been very successful in explaining the spectra, light curves, and the width-luminosity relation of spectroscopically normal Type Ia supernovae (SNe Ia). The ignition of the thermonuclear deflagration flame at the end of the convective carbon "simmering" phase in the core of the WD is still not well understood and much about the ignition kernel distribution remains unknown. Furthermore, the central density at the time of ignition depends on the still uncertain screened carbon fusion reaction rates, the accretion history and cooling time of the progenitor, and the composition. We present the results of twelve high-resolution three-dimensional delayed detonation SN Ia explosion simulations that employ a new criterion to trigger the deflagration to detonation transition (DDT). All simulations trigger our DDT criterion and the resulting delayed detonations unbind the star. We find a trend of increasing iron group element (IGE) production with increasing central density for bright, faint, and intermediate SNe. The total 56Ni yield, however, remains more or less constant, even though increased electron captures at high density result in a decreasing 56Ni mass fraction of the IGE material. We attribute this to an approximate balance of 56Ni producing and destroying effects. The deflagrations that were ignited at higher density initially have a faster growth rate of subgrid-scale turbulence. Hence, the effective flame speed increases faster, which triggers the DDT criterion earlier, at a time when the central density of the expanded star is higher. This leads to an overall increase of IGE production, which off-sets the percental reduction of 56Ni due to neutronization.
8 pages, 6 figures, 2 tables, accepted for publication in MNRAS. v2 now includes correct Fig. 6, which was missing from v1
References in corpus (21)
- Observational Constraints on the Nature of the Dark Energy: First Cosmological Results from the ESSENCE Supernova Survey
- Double-detonation sub-Chandrasekhar supernovae: can minimum helium shell masses detonate the core?
- Effects of Supernova Feedback on the Formation of Galaxy Disks
- A three-dimensional deflagration model for Type Ia supernovae confronted with observations
- Delayed detonations in full-star models of Type Ia supernova explosions
- Consistent estimates of (56)Ni yields for type Ia supernovae
- A localised subgrid scale model for fluid dynamical simulations in astrophysics I: Theory and numerical tests
- A localised subgrid scale model for fluid dynamical simulations in astrophysics II: Application to type Ia supernovae
- Possible Resonances in the 12C + 12C Fusion Rate and Superburst Ignition
- Type Ia Supernova: Calculations of Turbulent Flames Using the Linear Eddy Model
- Neutronization During Type Ia Supernova Simmering
- Flame-driven deflagration-to-detonation transitions in Type Ia supernovae?
- Secondary Parameters of Type Ia Supernova Light Curves
- Do spectra improve distance measurements of Type Ia supernovae?
- Metallicity as a source of dispersion in the SNIa bolometric light curve luminosity-width relationship
- On variations of the brightness of type Ia supernovae with the age of the host stellar population
- Convection during the Late Stages of Simmering in Type Ia Supernovae
- Evaluating Systematic Dependencies of Type Ia Supernovae: The Influence of Deflagration to Detonation Density
- A Three-Dimensional Picture of the Delayed-Detonation Model of Type Ia Supernovae
- On the Evolution of Thermonuclear Flames on Large Scales
- Uncertainties and robustness of the ignition process in type Ia supernovae
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- Three-dimensional pure deflagration models with nucleosynthesis and synthetic observables for Type Ia supernovae
- 3D deflagration simulations leaving bound remnants: a model for 2002cx-like Type Ia supernovae
- Explosive Nucleosynthesis in Near-Chandrasekhar Mass White Dwarf Models for Type Ia Supernovae: Dependence on Model Parameters
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- Type Ia supernova bolometric light curves and ejected mass estimates from the Nearby Supernova Factory
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- Do electron-capture supernovae make neutron stars? First multidimensional hydrodynamic simulations of the oxygen deflagration
- The ejected mass distribution of type Ia supernovae: A significant rate of non-Chandrasekhar-mass progenitors
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- A Parameter-Space Study of Carbon-Oxygen White Dwarf Mergers
- Super-Solar Metallicity Stars in the Galactic Center Nuclear Star Cluster: Unusual Sc, V, and Y Abundances
- A Tracer Method for Computing Type Ia Supernova Yields: Burning Model Calibration, Reconstruction of Thickened Flames, and Verification for Planar Detonations
- The Effects of Variations in Nuclear Interactions on Nucleosynthesis in Thermonuclear Supernovae
- The white dwarf's carbon fraction as a secondary parameter of Type Ia supernovae
- How do Type Ia Supernova Nebular Spectra Depend on Explosion Properties? Insights from Systematic non-LTE Modeling
- Late-time near-infrared observations of SN 2005df
- Type Ia supernovae and the ^{12}C+^{12}C reaction rate
- Evaluating Systematic Dependencies of Type Ia Supernovae: The Influence of Central Density
- A Subgrid-scale Model for Deflagration-to-Detonation Transitions in Type Ia Supernova Explosion Simulations - Numerical implementation
- A Physical Model for SN 2001ay, a normal, bright, extremely slowly declining Type Ia supernova
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- Can Helium-detonation Model Explain the Observed Diversity of Type Ia Supernovae?
- Power-Law Wrinkling Turbulence-Flame Interaction Model for Astrophysical Flames
- Delayed Detonation Thermonuclear Supernovae With An Extended Dark Matter Component
- Genus Statistic Applied to the X-ray Remnant of SN 1572: Clues to the Clumpy Ejecta Structure of Type Ia Supernovae
- The Intrinsic Stochasticity of the Ni Distribution of Single-Degenerate Type Ia Supernovae
- Thermonuclear (Type Ia) Supernovae and Progenitor Evolution
- Estimating Global Ejecta Mass Ratios in Tycho's SNR
- On Simulating Type Ia Supernovae