On the type Ia supernovae 2007on and 2011iv: Evidence for Chandrasekhar-mass explosions at the faint end of the luminosity-width relationship
C. Ashall, P. A. Mazzali, M. D. Stritzinger, P. Hoeflich, C. R. Burns,, C. Gall, E. Y. Hsiao, M. M. Phillips, N. Morrell, R. J. Foley

TL;DR
This study models two transitional type Ia supernovae, SN 2007on and SN 2011iv, revealing they are consistent with Chandrasekhar-mass delayed-detonation explosions and highlighting the roles of transition density and central density in their diversity.
Contribution
The paper provides detailed radiative transfer models of two SNe Ia in the same galaxy, demonstrating their consistency with Chandrasekhar-mass delayed-detonation models and analyzing the factors influencing their luminosity diversity.
Findings
Both supernovae had ejecta masses consistent with Chandrasekhar mass.
SN 2007on and SN 2011iv show differences in transition and central densities.
The diversity in luminosity-width relation is driven by transition density and central density.
Abstract
Radiative transfer models of two transitional type Ia supernova (SNe Ia) have been produced using the abundance stratification technique. These two objects --designated SN 2007on and SN 2011iv-- both exploded in the same galaxy, NGC 1404, which allows for a direct comparison. SN 2007on synthesised 0.25 of Ni and was less luminous than SN 2011iv, which produced 0.31 of Ni. SN 2007on had a lower central density () and higher explosion energy ( 0.3erg) than SN 2011iv, and it produced less nuclear statistical equilibrium (NSE) elements (0.06 ). Whereas, SN 2011iv had a larger , which increased the electron capture rate in the lowest velocity regions, and produced 0.35 of stable NSE elements. SN 2011iv had an explosion energy of $\sim 0.9…
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