Explosive Nucleosynthesis in Near-Chandrasekhar Mass White Dwarf Models for Type Ia Supernovae: Dependence on Model Parameters
arXiv:1710.04254 · doi:10.3847/1538-4357/aac2df
Abstract
We present two-dimensional hydrodynamics simulations of near-Chandrasekhar mass white dwarf (WD) models for Type Ia supernovae (SNe Ia) using the turbulent deflagration model with deflagration-detonation transition (DDT). We perform a parameter survey for 41 models to study the effects of the initial central density (i.e., WD mass), metallicity, flame shape, DDT criteria, and turbulent flame formula for a much wider parameter space than earlier studies. The final isotopic abundances of C to Tc in these simulations are obtained by post-process nucleosynthesis calculations. The survey includes SNe Ia models with the central density from g cm to g cm (WD masses of 1.30 - 1.38 ), metallicity from 0 to 5 , C/O mass ratio from 0.3 - 1.0 and ignition kernels including centered and off-centered ignition kernels. We present the yield tables of stable isotopes from C to Zn as well as the major radioactive isotopes for 33 models. Observational abundances of Mn, Fe, Fe and Ni obtained from the solar composition, well-observed SNe Ia and SN Ia remnants are used to constrain the explosion models and the supernova progenitor. The connection between the pure turbulent deflagration model and the subluminous SNe Iax is discussed. We find that dependencies of the nucleosynthesis yields on the metallicity and the central density (WD mass) are large. To fit these observational abundances and also for the application of galactic chemical evolution modeling, these dependencies on the metallicity and WD mass should be taken into account.
53 pages, 43 figures. Accepted for publication in Astrophysical Journal. Tables and figures updated to be consistent with other works. Also table magnified for better vision
References in corpus (17)
- Spontaneous Transition of Turbulent Flames to Detonations in Unconfined Media
- A Chandrasekhar Mass Progenitor for the Type Ia Supernova Remnant 3C 397 from The Enhanced Abundances of Nickel and Manganese
- A localised subgrid scale model for fluid dynamical simulations in astrophysics II: Application to type Ia supernovae
- Chemical composition and constraints on mass loss for globular clusters in dwarf galaxies: WLM and IKN
- Shortest Recurrence Periods of Novae
- Manganese Abundances in Cluster and Field Stars
- Single Degenerate Models for Type Ia Supernovae Progenitor's Evolution and Nucleosythesis Yields
- Subclasses of Type Ia Supernovae as the origin of [α/Fe] ratios in dwarf spheroidal galaxies
- 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
- Convection during the Late Stages of Simmering in Type Ia Supernovae
- Propagation of the First Flames in Type Ia Supernovae
- The white dwarf's carbon fraction as a secondary parameter of Type Ia supernovae
- Chemical abundances of giant stars in NGC 5053 and NGC 5634, two globular clusters associated with the Sagittarius dwarf Spheroidal galaxy?
- Rayleigh-Taylor Unstable Flames -- Fast or Faster?
- Impact of New Gamow-Teller Strengths on Explosive Type Ia Supernova Nucleosynthesis
- Evaluating Systematic Dependencies of Type Ia Supernovae: The Influence of Central Density
Cited by in corpus (88)
- FIRE-3: Updated Stellar Evolution Models, Yields, & Microphysics and Fitting Functions for Applications in Galaxy Simulations
- New Type Ia supernova Yields and the Manganese and Nickel Problems in the Milky Way and Dwarf Spheroidal Galaxies
- Enrichment of the hot intracluster medium: observations
- Explosive Nucleosynthesis in Sub-Chandrasekhar Mass White Dwarf Models for Type Ia Supernovae: Dependence on Model Parameters
- Constraints on the Chemical Enrichment History of the Perseus Cluster of Galaxies from High-Resolution X-ray Spectroscopy
- Evidence for Sub-Chandrasekhar Type Ia Supernovae from Stellar Abundances in Dwarf Galaxies
- Double-Detonation Models for Type Ia Supernovae: Trigger of Detonation in Companion White Dwarfs and Signatures of Companions' Stripped-off Materials
- Evolution of ONeMg Core in Super-AGB Stars towards Electron-Capture Supernovae: Effects of Updated Electron-Capture Rate
- Ionization correction factors and dust depletion patterns in giant HII regions
- Manganese Indicates a Transition from Sub- to Near-Chandrasekhar Type Ia Supernovae in Dwarf Galaxies
- Electron Capture Supernovae of Super-AGB Stars: Sensitivity on Input Physics
- Monte Carlo radiative transfer for the nebular phase of Type Ia supernovae
- The supernova remnant population of the Small Magellanic Cloud
- Metallicity-dependent nucleosynthetic yields of Type Ia supernovae originating from double detonations of sub-M white dwarfs
- The effects of different Type Ia SN yields on Milky Way chemical evolution
- SNR-calibrated Type Ia supernova models
- 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
- Simultaneous Constraints on the Star Formation History and Nucleosynthesis of Sculptor dSph
- Evidence for sub-Chandrasekhar Type Ia supernovae from the last major merger
- Using failed supernovae to constrain the Galactic r-process element production
- Stable nickel production in Type Ia supernovae: A smoking gun for the progenitor mass?
- Explosive Nucleosynthesis in Near-Chandrasekhar-mass White Dwarf Models for Type Iax Supernovae: Dependence on Model Parameters
- Nucleosynthesis Constraints on the Explosion Mechanism for Type Ia Supernovae
- Oxygen, sulfur, and iron radial abundance gradients of classical Cepheids across the Galactic thin disk
- Cosmic nucleosynthesis: a multi-messenger challenge
- The chemical DNA of the Magellanic Clouds -- I. The chemical composition of 206 Small Magellanic Cloud red giant stars
- Hydrodynamic Simulations of Pre-Supernova Outbursts in Red Supergiants: Asphericity and Mass Loss
- Chemical abundances in Sgr A East: evidence for a Type Iax supernova remnant
- The similarity of the interstellar comet 2I/Borisov to solar system comets from high resolution optical spectroscopy
- Hydrodynamic Simulations of Electron-capture Supernovae: Progenitor and Dimension Dependence
- Discovery of the Highly-Neutronized Ejecta Clump with Enhanced Abundances of Titanium and Chromium in the Type Ia Supernova Remnant 3C 397
- A homogeneous comparison between the chemical composition of the Large Magellanic Cloud and the Sagittarius dwarf galaxy
- Mapping radial abundance gradients with Gaia-ESO open clusters: Evidence of recent gas accretion in the Milky Way disk
- Accretion-Induced Collapse of Dark Matter Admixed White Dwarfs -- I: Formation of Low-mass Neutron Stars
- Near-Chandrasekhar-Mass Type Ia Supernovae from the Double-Degenerate Channel
- Constraining the origin and models of chemical enrichment in galaxy clusters using the Athena X-IFU
- Phosphorus Abundances in the Hyades and Galactic Disk
- Origin of metals in old Milky Way halo stars based on GALAH and Gaia
- 3D Hydrodynamical Simulations of Helium-Ignited Double-degenerate White Dwarf Mergers
- Analysis of XMM-Newton Observations of Supernova Remnant W49B and Clues to the Progenitor
- The Whisper of a Whimper of a Bang: 2400 Days of the Type Ia SN 2011fe Reveals the Decay of Fe
- Type Ia supernova explosion models are inherently multidimensional
- A Nucleosynthetic Origin for the Southwestern Fe-rich Structure in Kepler's Supernova Remnant
- Chemical enrichment in the cool core of the Centaurus cluster of galaxies
- Delayed Detonation Thermonuclear Supernovae With An Extended Dark Matter Component
- Type Ia Supernova Nucleosynthesis: Metallicity-Dependent Yields
- The Late-Time Light Curves of Type Ia Supernovae: Confronting Models with Observations
- Screening Effects on Electron Capture Rates and Type Ia Supernova Nucleosynthesis
- Exploration of Aspherical Ejecta Properties in Type Ia Supernova: Progenitor Dependence and Applications to Progenitor Classification
- Hydrodynamics and Nucleosynthesis of Jet-Driven Supernovae I: Parameter Study of the Dependence on Jet Energetics
- Chandrasekhar-mass white dwarfs are the progenitors of a small fraction of Type Ia supernovae according to nucleosythesis constraints
- Modelling the evolution and influence of dust in cosmological simulations that include the cold phase of the interstellar medium
- Spatially Resolved X-ray Study of Supernova Remnant G306.30.9 with Unusually High Calcium Abundance
- Unveiling the chemical fingerprint of phosphorus-rich stars I. In the infrared region of APOGEE-2
- Accretion-Induced Collapse of Dark Matter Admixed White Dwarfs -- II: Rotation and Gravitational-wave Signals
- Pulsational Pair-instability Supernovae. II. Neutrino Signals from Pulsations and their Detection by Terrestrial Neutrino Detectors
- Evolution of lithium in the disc of the Galaxy and the role of novae
- The Galactic Chemical Evolution of Chlorine
- The impact of asymmetric neutrino emissions on nucleosynthesis in core-collapse supernovae II -- progenitor dependences --
- Hydrodynamics and Nucleosynthesis of Jet-Driven Supernovae II: Comparisons with Abundances of Extremely Metal-Poor Galaxies and Constraints on Supernova Progenitors
- Chemical enrichment in groups and clusters
- Investigation of the Prompt SNe Ia progenitor nature through the analysis of the chemical composition of globular clusters and circumgalactic clouds
- The accuracy of post-processing nucleosynthesis
- O, Ne, Mg, and Fe Abundances in Hot X-Ray-emitting Halos of Galaxy Clusters, Groups, and Giant Early-type Galaxies with XMM-Newton RGS Spectroscopy
- Using Ti Emission to Differentiate Between Thermonuclear Supernova Progenitors
- Using chemical evolution models of the Milky Way disk to constrain Type Ia supernova progenitors
- Triangulum-Andromeda overdensity: a region with a complex stellar population
- SPI Analysis and Abundance Calculations of DEM L71, and Comparison to SN explosion Models
- Explosive Nucleosynthesis: What we learned and what we still do not understand
- Revisiting the Perseus Cluster I: Resolving the Si/S/Ar/Ca ratios by Stellar Convection
- Primordial Black Hole Triggered Type Ia Supernovae I: Impact on Explosion Dynamics and Light Curves
- Thermonuclear (Type Ia) Supernovae and Progenitor Evolution
- Strong Evidence for Cosmic Ray-Supported L Galaxy Halos via X-ray \& tSZ Constraints
- Argon X-ray absorption in the local ISM
- A chemical close-up of the main body of the Sagittarius dwarf galaxy
- Type Ia Supernovae from First-generation Stars
- Estimating Ejecta Mass Ratios in Kepler's SNR: Global X-Ray Spectral Analysis Including Suzaku Systematics and Emitting Volume Uncertainties
- Estimating Global Ejecta Mass Ratios in Tycho's SNR
- Typing supernova remnant G352.70.1 using XMM-Newton X-ray observations
- Revisiting the Perseus Cluster II: Metallicity-Dependence of Massive Stars and Chemical Enrichment History
- SDSSJ0018-0939: A Clear Signature of Sub-Chandrasekhar Mass Type 1a Supernova
- Primordial Black Hole Triggered Type Ia Supernovae II: Comparison with Supernova Remnants and Galactic Chemical Evolution
- Revisiting the Perseus Cluster III: Role of Aspherical Explosions on its Chemical Composition and Extension to Metal-Poor Stars and Galaxies
- Testing the effect of progenitor's metallicity on Ni mass and constraining the progenitor scenarios in Type Ia supernovae
- Ranking Theoretical Supernovae Explosion Models from Observations of the Intracluster Gas
- A New Versatile Code for Gamma-Ray Monte-Carlo Radiative Transfer
- Chemical enrichment of ICM within the A3266 cluster I: radial profiles
- The chemical DNA of the Magellanic Clouds VI. Origin and evolution of neutron-capture elements in the SMC