Evaluating Systematic Dependencies of Type Ia Supernovae: The Influence of Progenitor Ne22 Content on Dynamics
arXiv:0906.4384 · doi:10.1088/0004-637X/701/2/1582
Abstract
We present a theoretical framework for formal study of systematic effects in Supernovae Type Ia (SN Ia) that utilizes 2-d simulations to implement a form of the deflagration-detonation transition (DDT) explosion scenario. The framework is developed from a randomized initial condition that leads to a sample of simulated SN Ia whose Ni56 masses have a similar average and range to those observed, and have many other modestly realistic features such as the velocity extent of intermediate mass elements. The intended purpose is to enable statistically well-defined studies of both physical and theoretical parameters of the SN Ia explosion simulation. We present here a thorough description of the outcome of the SN Ia explosions produced by our current simulations. A first application of this framework is utilized to study the dependence of the SN Ia on the Ne22 content, which is known to be directly influenced by the progenitor stellar population's metallicity. Our study is very specifically tailored to measure how the Ne22 content influences the competition between the rise of plumes of burned material and the expansion of the star before these plumes reach DDT conditions. This competition controls the amount of material in nuclear statistical equilibrium (NSE) and therefore Ni56 produced by setting the density at which nucleosynthesis takes place during the detonation phase of the explosion. Although the outcome following from any particular ignition condition can change dramatically with Ne22 content, with a sample of 20 ignition conditions we find that the systematic change in the expansion of the star prior to detonation is not large enough to compete with the dependence on initial neutron excess discussed by Timmes, Brown & Truran (2003). (Abridged)
25 pages 15 figures, accepted to ApJ
References in corpus (18)
- Observational Constraints on the Nature of the Dark Energy: First Cosmological Results from the ESSENCE Supernova Survey
- CfA3: 185 Type Ia Supernova Light Curves from the CfA
- A Common Explosion Mechanism for Type Ia Supernovae
- The Subaru/XMM-Newton Deep Survey (SXDS) - II. Optical Imaging and Photometric Catalogs
- The Sloan Digital Sky Survey-II: Photometry and Supernova Ia Light Curves from the 2005 data
- Supernova rates from the Southern inTermediate Redshift ESO Supernova Search (STRESS)
- Delayed detonations in full-star models of Type Ia supernova explosions
- Fusion reactions in multicomponent dense matter
- A localised subgrid scale model for fluid dynamical simulations in astrophysics I: Theory and numerical tests
- Capturing the Fire: Flame Energetics and Neutronizaton for Type Ia Supernova Simulations
- Flame Evolution During Type Ia Supernovae and the Deflagration Phase in the Gravitationally Confined Detonation Scenario
- Abundance stratification in Type Ia Supernovae - II: The rapidly declining, spectroscopically normal SN 2004eo
- Neutronization During Type Ia Supernova Simmering
- The Reduction of the Electron Abundance during the Pre-explosion Simmering in White Dwarf Supernovae
- Detonating Failed Deflagration Model of Thermonuclear Supernovae I. Explosion Dynamics
- Propagation of the First Flames in Type Ia Supernovae
- The Palomar-Quest Digital Synoptic Sky Survey
- A Three-Dimensional Picture of the Delayed-Detonation Model of Type Ia Supernovae
Cited by in corpus (40)
- Modules for Experiments in Stellar Astrophysics (MESA): Binaries, Pulsations, and Explosions
- Sub-Chandrasekhar-mass white dwarf detonations revisited
- Host Galaxy Properties and Hubble Residuals of Type Ia Supernovae from the Nearby Supernova Factory
- Double Detonations with Thin, Modestly Enriched Helium Layers Can Make Normal Type Ia Supernovae
- Type Ia supernovae from exploding oxygen-neon white dwarfs
- Nuclear astrophysics: the unfinished quest for the origin of the elements
- Metallicity as a source of dispersion in the SNIa bolometric light curve luminosity-width relationship
- Multi-Dimensional Parameter Study of Double Detonation Type Ia Supernovae Originating from Thin-Helium-Shell White Dwarfs
- Properties of Carbon-Oxygen White Dwarfs From Monte Carlo Stellar Models
- The Deflagration Stage of Chandrasekhar Mass Models For Type Ia Supernovae: I. Early Evolution
- Type Ia supernova diversity: white dwarf central density as a secondary parameter in three-dimensional delayed detonation models
- On variations of the brightness of type Ia supernovae with the age of the host stellar population
- Evaluating Systematic Dependencies of Type Ia Supernovae: The Influence of Deflagration to Detonation Density
- 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
- The Large-Scale Environments of Type Ia Supernovae: Evidence for a Metallicity Bias in the Rate or Luminosity of Prompt Ia Events
- Type Ia Supernova Explosions from Hybrid Carbon-Oxygen-Neon White Dwarf Progenitors
- Evaluating Systematic Dependencies of Type Ia Supernovae: The Influence of Central Density
- Neutronization During Carbon Simmering In Type Ia Supernova Progenitors
- A Subgrid-scale Model for Deflagration-to-Detonation Transitions in Type Ia Supernova Explosion Simulations - Numerical implementation
- Convection Destroys the Core/Mantle Structure in Hybrid C/O/Ne White Dwarfs
- Constraining The Single-Degenerate Channel of Type Ia Supernovae With Stable Iron-Group Elements in SNR 3C 397
- Combustion in thermonuclear supernova explosions
- Near-Chandrasekhar-Mass Type Ia Supernovae from the Double-Degenerate Channel
- On Measuring the Metallicity of a Type Ia Supernova's Progenitor
- Power-Law Wrinkling Turbulence-Flame Interaction Model for Astrophysical Flames
- Asymmetry and the Nucleosynthetic Signature of Nearly Edge-Lit Detonation in White Dwarf Cores
- On Silicon Group Elements Ejected by Supernovae Type Ia
- Quantifying How Density Gradients and Front Curvature Affect Carbon Detonation Strength During Type Ia Supernovae
- Stellar Neutrino Emission Across The Mass-Metallicity Plane
- Type Ia Supernova Explosions from Hybrid Carbon-Oxygen-Neon White Dwarf Progenitors That Have Mixed During Cooling
- Uncertainties and robustness of the ignition process in type Ia supernovae
- The Intrinsic Stochasticity of the Ni Distribution of Single-Degenerate Type Ia Supernovae
- Modeling subgrid combustion processes in simulations of thermonuclear supernovae
- Binary Paths to Type Ia Supernovae Explosions: The Highlights
- On Simulating Type Ia Supernovae
- Cosmic Chandlery with Thermonuclear Supernovae
- Evaluating Systematic Dependencies of Type Ia Supernovae
- Type Iax supernovae from deflagrations in Chandrasekhar mass white dwarfs