The white dwarf's carbon fraction as a secondary parameter of Type Ia supernovae
arXiv:1409.2866 · doi:10.1051/0004-6361/201423924
Abstract
Binary stellar evolution calculations predict that Chandrasekhar-mass carbon/oxygen white dwarfs (WDs) show a radially varying profile for the composition with a carbon depleted core. Many recent multi-dimensional simulations of Type Ia supernovae (SNe Ia), however, assume the progenitor WD has a homogeneous chemical composition. In this work, we explore the impact of different initial carbon profiles of the progenitor WD on the explosion phase and on synthetic observables in the Chandrasekhar-mass delayed detonation model. Spectra and light curves are compared to observations to judge the validity of the model. The explosion phase is simulated using the finite volume supernova code LEAFS, which is extended to treat different compositions of the progenitor WD. The synthetic observables are computed with the Monte Carlo radiative transfer code ARTIS. Differences in binding energies of carbon and oxygen lead to a lower nuclear energy release for carbon depleted material; thus, the burning fronts that develop are weaker and the total nuclear energy release is smaller. For otherwise identical conditions, carbon depleted models produce less Ni-56. Comparing different models with similar Ni-56 yields shows lower kinetic energies in the ejecta for carbon depleted models, but only small differences in velocity distributions and line velocities in spectra. The light curve width-luminosity relation (WLR) obtained for models with differing carbon depletion is roughly perpendicular to the observed WLR, hence the carbon mass fraction is probably only a secondary parameter in the family of SNe Ia.
Accepted by A&A. 16 pages, 14 figures
References in corpus (18)
- CfA3: 185 Type Ia Supernova Light Curves from the CfA
- Double-detonation sub-Chandrasekhar supernovae: can minimum helium shell masses detonate the core?
- A Common Explosion Mechanism for Type Ia Supernovae
- Double-detonation sub-Chandrasekhar supernovae: synthetic observables for minimum helium shell mass models
- Secondary Maximum in the Near-Infrared Lightcurves of Type Ia Supernovae
- Double-detonation supernovae of sub-Chandrasekhar mass white dwarfs
- Delayed detonations in full-star models of Type Ia supernova explosions
- 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
- Type Ia Supernova: Calculations of Turbulent Flames Using the Linear Eddy Model
- Multi-dimensional simulations of radiative transfer in Type Ia supernovae
- Flame-driven deflagration-to-detonation transitions in Type Ia supernovae?
- 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
- A Three-Dimensional Picture of the Delayed-Detonation Model of Type Ia Supernovae
- On the detection of the progenitor of the type Ia supernova 2007on
- Supernovae and Cosmology
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