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Simulations of Electron Capture and Low-Mass Iron Core Supernovae

Authors :
Müller, B.
Wanajo, S.
Janka, H. -Th.
Heger, A.
Gay, D.
Sim, S. A.
Müller, B.
Wanajo, S.
Janka, H. -Th.
Heger, A.
Gay, D.
Sim, S. A.
Publication Year :
2017

Abstract

The evolutionary pathways of core-collapse supernova progenitors at the low-mass end of the spectrum are beset with major uncertainties. In recent years, a variety of evolutionary channels has been discovered in addition to the classical electron capture supernova channel of super-AGB stars. The few available progenitor models at the low-mass end have been studied with great success in supernova simulations as the peculiar density structure makes for robust neutrino-driven explosions in this mass range. Detailed nucleosynthesis calculations have been conducted both for models of electron capture supernovae and low-mass iron core supernovae and revealed an interesting production of the lighter trans-iron elements (such as Zn, Sr, Y, Zr) as well as rare isotopes like Ca-48 and Fe-60. We stress the need to explore the low-mass end of the supernova spectrum further and link various observables to understand the diversity of explosions in this regime.<br />Comment: 7 page, 3 figures, proceedings of the conference "The AGB-Supernova Mass Transition", to appear in Memorie della Societ\`a Astronomica Italiana

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1363485234
Document Type :
Electronic Resource