makes explosive oxygen burning sensitive to the metallicity of the progenitors of type Ia supernovae
arXiv:1907.01158 · doi:10.1051/0004-6361/201936024
Abstract
Even though the main nucleosynthetic products of type Ia supernovae belong to the iron-group, intermediate-mass alpha-nuclei (silicon, sulfur, argon, and calcium) stand out in their spectra up to several weeks past maximum brightness. Recent measurements of the abundances of calcium, argon, and sulfur in type Ia supernova remnants have been interpreted in terms of metallicity-dependent oxygen burning, in accordance with previous theoretical predictions. It is known that -rich oxygen burning results from OC followed by efficient C+C fusion reaction, as compared to oxygen consumption by O fusion reactions, but the precise mechanism of dependence on the progenitor metallicity has remained unidentified so far. I show that the chain O(p,)N(,p)C boosts -rich oxygen burning when the proton abundance is large, increasing the synthesis of argon and calcium with respect to sulfur and silicon. For high-metallicity progenitors, the presence of free neutrons leads to a drop in the proton abundance and the above chain is not efficient. Although the rate of O(p,)N can be found in astrophysical reaction rate libraries, its uncertainty is unconstrained. Assuming that all reaction rates other than O(p,)N retain their standard values, an increase by a factor of approximately seven of the O(p,)N rate at temperatures in the order K is enough to explain the whole range of calcium-to-sulfur mass ratios measured in Milky Way and LMC supernova remnants. These same measurements provide a lower limit to the O(p,)N rate in the mentioned temperature range, on the order of a factor of 0.5 with respect to the rate reported in widely used literature tabulations.
5 pages, 6 figures, accepted for Astronomy & Astrophysics
References in corpus (10)
- Discriminating the Progenitor Type of Supernova Remnants with Iron K-Shell Emission
- A Chandrasekhar Mass Progenitor for the Type Ia Supernova Remnant 3C 397 from The Enhanced Abundances of Nickel and Manganese
- Abundance stratification in Type Ia Supernovae - II: The rapidly declining, spectroscopically normal SN 2004eo
- Neutronization During Type Ia Supernova Simmering
- The End of Amnesia: A New Method for Measuring the Metallicity of Type Ia Supernova Progenitors Using Manganese Lines in Supernova Remnants
- The Reduction of the Electron Abundance during the Pre-explosion Simmering in White Dwarf Supernovae
- Sensitivity study of explosive nucleosynthesis in Type Ia supernovae: I. Modification of individual thermonuclear reaction rates
- Abundance stratification in Type Ia Supernovae - IV: the luminous, peculiar SN 1991T
- Abundance stratification in Type Ia supernovae - V. SN 1986G bridging the gap between normal and subluminous SNe Ia
- Type Ia Supernovae keep memory of their progenitor metallicity