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Type Ia Supernovae from Merging White Dwarfs I. Prompt Detonations

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arxiv 1311.5008 v1 pith:YH4VEHPE submitted 2013-11-20 astro-ph.HE astro-ph.SR

classification astro-ph.HEastro-ph.SR
keywords msunlightmodelscurvesmergingangledetonationsdwarfs
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Merging white dwarfs are a possible progenitor of Type Ia supernovae (SNe Ia). While it is not entirely clear if and when an explosion is triggered in such systems, numerical models suggest that a detonation might be initiated before the stars have coalesced to form a single compact object. Here we study such "peri-merger" detonations by means of numerical simulations, modeling the disruption and nucleosynthesis of the stars until the ejecta reach the coasting phase. Synthetic light curves and spectra are generated for comparison with observations. Three models are considered with primary masses 0.96 Msun, 1.06 Msun, and 1.20 Msun. Of these, the 0.96 Msun dwarf merging with an 0.81 Msun companion, with a Ni56 yield of 0.58 Msun, is the most promising candidate for reproducing common SNe Ia. The more massive mergers produce unusually luminous SNe Ia with peak luminosities approaching those attributed to "super-Chandrasekhar" mass SNe Ia. While the synthetic light curves and spectra of some of the models resemble observed SNe Ia, the significant asymmetry of the ejecta leads to large orientation effects. The peak bolometric luminosity varies by more than a factor of 2 with the viewing angle, and the velocities of the spectral absorption features are lower when observed from angles where the light curve is brightest. The largest orientation effects are seen in the ultraviolet, where the flux varies by more than an order of magnitude. Despite the large variation with viewing angle, the set of three models roughly obeys a width-luminosity relation, with the brighter light curves declining more slowly in the B-band. Spectral features due to unburned carbon from the secondary star are also seen in some cases.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. What triggers type Ia supernovae: Prompt detonations from primordial black holes or companion stars?

    astro-ph.CO 2025-05 conditional novelty 6.0 of 10

    Collision rate simulations between asteroid-mass primordial black holes and white dwarfs reproduce the observed rate, host, and brightness distributions of type Ia supernovae, and the author argues these dark matter i...

  2. SPH methods in the modelling of compact objects

    astro-ph.HE 2026-07 conditional novelty 1.0 of 10

    An updated expert review of Newtonian and general-relativistic SPH for compact-object mergers, arguing that modern SPH variants with better kernels, steered dissipation and reproducing gradients match grid-based codes...

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