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  • The ejected mass distributi... The ejected mass distribution of Type Ia supernovae: a significant rate of non-Chandrasekhar-mass progenitors
    Scalzo, R. A; Ruiter, A. J; Sim, S. A Monthly Notices of the Royal Astronomical Society, 12/2014, Volume: 445, Issue: 3
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    The ejected mass distribution of Type Ia supernovae (SNe Ia) directly probes progenitor evolutionary history and explosion mechanisms, with implications for their use as cosmological probes. Although ...
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  • Time-dependent three-dimens... Time-dependent three-dimensional spectrum synthesis for Type Ia supernovae
    Kromer, M.; Sim, S. A. Monthly Notices of the Royal Astronomical Society, October 2009, Volume: 398, Issue: 4
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    A Monte Carlo code (artis) for modelling time-dependent three-dimensional spectral synthesis in chemically inhomogeneous models of Type Ia supernova ejecta is presented. Following the propagation of ...
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  • Polarization spectral synth... Polarization spectral synthesis for Type Ia supernova explosion models
    Bulla, M; Sim, S. A; Kromer, M Monthly Notices of the Royal Astronomical Society, 06/2015, Volume: 450, Issue: 1
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    We present a Monte Carlo radiative transfer technique for calculating synthetic spectropolarimetry for multidimensional supernova explosion models. The approach utilizes ‘virtual-packets’ that are ...
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  • 3D deflagration simulations... 3D deflagration simulations leaving bound remnants: a model for 2002cx-like Type Ia supernovae
    Kromer, M; Fink, M; Stanishev, V ... Monthly Notices of the Royal Astronomical Society, 03/2013, Volume: 429, Issue: 3
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    2002cx-like supernovae are a sub-class of sub-luminous Type Ia supernovae (SNe). Their light curves and spectra are characterized by distinct features that indicate strong mixing of the explosion ...
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  • Deflagrations in hybrid CON... Deflagrations in hybrid CONe white dwarfs: a route to explain the faint Type Iax supernova 2008ha
    Kromer, M; Ohlmann, S. T; Pakmor, R ... Monthly Notices of the Royal Astronomical Society, 07/2015, Volume: 450, Issue: 3
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    Stellar evolution models predict the existence of hybrid white dwarfs (WDs) with a carbon–oxygen core surrounded by an oxygen–neon mantle. Being born with masses ∼1.1 M⊙, hybrid WDs in a binary ...
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