A Tracer Method for Computing Type Ia Supernova Yields: Burning Model Calibration, Reconstruction of Thickened Flames, and Verification for Planar Detonations
arXiv:1605.04878 · doi:10.3847/0067-0049/225/1/3
Abstract
We refine our previously introduced parameterized model for explosive carbon-oxygen fusion during thermonuclear supernovae (SN Ia) by adding corrections to post-processing of recorded Lagrangian fluid element histories to obtain more accurate isotopic yields. Deflagration and detonation products are verified for propagation in a uniform density medium. A new method is introduced for reconstructing the temperature-density history within the artificially thick model deflagration front. We obtain better than 5\% consistency between the electron capture computed by the burning model and yields from post-processing. For detonations, we compare to a benchmark calculation of the structure of driven steady-state planar detonations performed with a large nuclear reaction network and error-controlled integration. We verify that, for steady-state planar detonations down to a density of 5x10^6 g/cc, our post processing matches the major abundances in the benchmark solution typically to better than 10% for times greater than 0.01 s after the shock front passage. As a test case to demonstrate the method, presented here with post-processing for the first time, we perform a two dimensional simulation of a SN Ia in the Chandrasekhar-mass deflagration-detonation transition (DDT) scenario. We find that reconstruction of deflagration tracks leads to slightly more complete silicon burning than without reconstruction. The resulting abundance structure of the ejecta is consistent with inferences from spectroscopic studies of observed SNe Ia. We confirm the absence of a central region of stable Fe-group material for the multi-dimensional DDT scenario. Detailed isotopic yields are tabulated and only change modestly when using deflagration reconstruction.
28 pages, 16 figures, Accepted to the Astrophysical Journal Supplemental
References in corpus (39)
- Supernova Constraints and Systematic Uncertainties from the First 3 Years of the Supernova Legacy Survey
- Three-dimensional delayed-detonation models with nucleosynthesis for Type Ia supernovae
- Supernova 2011fe from an Exploding Carbon-Oxygen White Dwarf Star
- Double-detonation sub-Chandrasekhar supernovae: can minimum helium shell masses detonate the core?
- Constraints on the Progenitor System of the Type Ia Supernova SN 2011fe/PTF11kly
- A Compact Degenerate Primary-Star Progenitor of SN 2011fe
- Extensible Component Based Architecture for FLASH, A Massively Parallel, Multiphysics Simulation Code
- Three-dimensional pure deflagration models with nucleosynthesis and synthetic observables for Type Ia supernovae
- Nucleosynthesis in multi-dimensional SNIa explosions
- Abundance stratification in Type Ia supernovae - I. The case of SN 2002bo
- EVLA Observations Constrain the Environment and Progenitor System of Type Ia Supernova 2011fe
- Failed-Detonation Supernovae: Sub-Luminous Low-Velocity Ia Supernovae and Their Kicked Remnant White Dwarfs with Iron-Rich Cores
- Nucleosynthesis in Two-Dimensional Delayed Detonation Models of Type Ia Supernova Explosions
- Three-Dimensional Simulations of the Deflagration Phase of the Gravitationally Confined Detonation Model of Type Ia Supernovae
- Type Ia supernova bolometric light curves and ejected mass estimates from the Nearby Supernova Factory
- Capturing the Fire: Flame Energetics and Neutronizaton for Type Ia Supernova Simulations
- Spontaneous Initiation of Detonations in White Dwarf Environments: Determination of Critical Sizes
- Study of the Detonation Phase in the Gravitationally Confined Detonation Model of Type Ia Supernovae
- 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
- Nucleosynthesis in thermonuclear supernovae with tracers: convergence and variable mass particles
- Metallicity as a source of dispersion in the SNIa bolometric light curve luminosity-width relationship
- Evaluating Systematic Dependencies of Type Ia Supernovae: The Influence of Progenitor Ne22 Content on Dynamics
- The Detonation Mechanism of the Pulsationally-Assisted Gravitationally-Confined Detonation Model of Type Ia Supernovae
- 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
- Laterally Propagating Detonations in Thin Helium Layers on Accreting White Dwarfs
- Three-dimensional Simulations of Pure Deflagration Models for Thermonuclear Supernovae
- The Effects of Curvature and Expansion on Helium Detonations on White Dwarf Surfaces
- The Laminar Flame Speedup by Neon-22 Enrichment in White Dwarf Supernovae
- 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
- Power-Law Wrinkling Turbulence-Flame Interaction Model for Astrophysical Flames
- Multi-dimensional numerical simulations of type Ia supernova explosions
- Incomplete carbon-oxygen detonation in Type Ia supernovae
- The Effect of the Pre-Detonation Stellar Internal Velocity Profile on the Nucleosynthetic Yields in Type Ia Supernova
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- Exploration of Aspherical Ejecta Properties in Type Ia Supernova: Progenitor Dependence and Applications to Progenitor Classification
- Quantifying How Density Gradients and Front Curvature Affect Carbon Detonation Strength During Type Ia Supernovae
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- The Intrinsic Stochasticity of the Ni Distribution of Single-Degenerate Type Ia Supernovae
- The accuracy of post-processing nucleosynthesis
- Using chemical evolution models of the Milky Way disk to constrain Type Ia supernova progenitors
- Modeling subgrid combustion processes in simulations of thermonuclear supernovae
- Revisiting the Perseus Cluster II: Metallicity-Dependence of Massive Stars and Chemical Enrichment History
- Cosmic Chandlery with Thermonuclear Supernovae
- Trans-Fe elements from Type Ia Supernovae. I. Heavy element nucleosynthesis during the formation of near-Chandrasekhar white dwarfs