Double detonations of sub-Chandrasekhar mass CO white dwarfs: Can different core and He shell masses explain variations of Type Ia supernovae?
Sabrina Gronow, Christine E. Collins, Stuart A. Sim, Friedrich K., Roepke

TL;DR
This study uses 3D simulations to explore how varying core and helium shell masses in sub-Chandrasekhar CO white dwarfs can produce diverse Type Ia supernovae characteristics, matching some observed brightness and light curve features.
Contribution
It provides a detailed parameter study of double detonations in CO white dwarfs, linking core and shell masses to explosion outcomes and observable supernova properties.
Findings
Models reproduce sub-luminous to normal SNe Ia brightness range.
Ejecta asymmetries lead to diverse observable features.
Models overestimate asymmetry effects and decline rates compared to data.
Abstract
Sub-Chandrasekhar mass carbon-oxygen white dwarfs (CO WDs) with a surface helium (He) shell have been proposed as progenitors of Type Ia supernovae (SNe Ia). If true, the resulting thermonuclear explosions should be able to account for at least some of the range of SNe Ia observables. To study this, we conduct a parameter study based on 3D simulations of double detonations in CO WDs with a He shell, assuming different core and shell masses. An admixture of C to the shell and solar metallicity are included in the models. The hydrodynamic simulations are carried out using the AREPO code. This allows us to follow the He shell detonation with high numerical resolution, and improves the reliability of predicted nucleosynthetic shell detonation yields. The addition of C to the shell leads to a lower production of 56Ni while including solar metallicity increases the production of IMEs. The…
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Taxonomy
TopicsGamma-ray bursts and supernovae · Stellar, planetary, and galactic studies · Astro and Planetary Science
