Type Ia Supernovae from Sub-Chandrasekhar Mass White Dwarfs
Stuart Sim, F. K. Röpke, M. Kromer, M. Fink, Ashley J. Ruiter, I. R. Seitenzahl, Rüdiger Pakmor, W. Hillebrandt
Abstract
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Stuart Sim, F. K. Röpke, M. Kromer, M. Fink, Ashley J. Ruiter, I. R. Seitenzahl, Rüdiger Pakmor, W. Hillebrandt
Abstract
Open-access reader
Abstract We argue that detonations of sub-Chandrasekhar mass white dwarfs can lead to bright explosions with light curves and spectra similar to those of observed Type Ia supernovae. Given that binary systems containing accreting sub-Chandrasekhar mass white dwarfs should be common, this suggests that a non-negligible fraction of the observed Type Ia supernova rate may arise from sub-Chandrasekhar mass explosions, if they can be ignited. We discuss aspects of how such explosions might be realized in nature and both merits and challenges associated with invoking sub-Chandrasekhar mass explosion models to account for observed Type Ia supernovae.
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Abstract We argue that detonations of sub-Chandrasekhar mass white dwarfs can lead to bright explosions with light curves and spectra similar to those of observed Type Ia supernovae. Given that binary systems containing accreting sub-Chandrasekhar mass white dwarfs should be common, this suggests that a non-negligible fraction of the observed Type Ia supernova rate may arise from sub-Chandrasekhar mass explosions, if they can be ignited. We discuss aspects of how such explosions might be realized in nature and both merits and challenges associated with invoking sub-Chandrasekhar mass explosion models to account for observed Type Ia supernovae.
Key concepts: Chandrasekhar limit, Supernova, White dwarf, Physics, Astrophysics, Type (biology), Astronomy, Stars