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Multi-Dimensional Radiative Transfer Calculations of Double Detonations of Sub-Chandrasekhar-Mass White Dwarfs

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arxiv 2108.12435 v2 pith:PGTJ2MX2 submitted 2021-08-27 astro-ph.SR astro-ph.HE

classification astro-ph.SRastro-ph.HE
keywords detonationdoublewhitecalculationsdwarfsheliumsub-chandrasekhar-masstype
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Study of the double detonation Type Ia supernova scenario, in which a helium shell detonation triggers a carbon core detonation in a sub-Chandrasekhar-mass white dwarf, has experienced a resurgence in the past decade. New evolutionary scenarios and a better understanding of which nuclear reactions are essential have allowed for successful explosions in white dwarfs with much thinner helium shells than in the original, decades-old incarnation of the double detonation scenario. In this paper, we present the first suite of light curves and spectra from multi-dimensional radiative transfer calculations of thin-shell double detonation models, exploring a range of white dwarf and helium shell masses. We find broad agreement with the observed light curves and spectra of non-peculiar Type Ia supernovae, from subluminous to overluminous subtypes, providing evidence that double detonations of sub-Chandrasekhar-mass white dwarfs produce the bulk of observed Type Ia supernovae. Some discrepancies in spectral velocities and colors persist, but these may be brought into agreement by future calculations that include more accurate initial conditions and radiation transport physics.

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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. Deep MUSE observations of SNR 0509-67.5 reveal a double degenerate merger progenitor

    astro-ph.SR 2026-08 conditional novelty 7.0 of 10

    SNR 0509-67.5 shows a 1000 km/s bulk Doppler shift and a flattened ejecta edge, which the authors model as a companion shadow to infer a double-white-dwarf merger progenitor.

  2. Detecting White Dwarf Binary Mergers with Gravitational Waves

    gr-qc 2025-10 conditional novelty 6.0 of 10

    MAGIS Space and AEDGE could detect white-dwarf-binary mergers in the 10 mHz–1 Hz band, giving early warning of Type Ia supernova explosions at rates of roughly one every four years and a few hundred per year, respectively.

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