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Binary progenitor systems for Type Ic supernovae

Authors :
Solar, Martín
Michałowski, Michał J.
Nadolny, Jakub
Galbany, Lluís
Hjorth, Jens
Zapartas, Emmanouil
Sollerman, Jesper
Hunt, Leslie
Klose, Sylvio
Koprowski, Maciej
Leśniewska, Aleksandra
Małkowski, Michał
Guelbenzu, Ana M. Nicuesa
Ryzhov, Oleh
Savaglio, Sandra
Schady, Patricia
Schulze, Steve
Postigo, Antonio de Ugarte
Vergani, Susanna D.
Watson, Darach
Wróblewski, Radosław
Source :
Nat Commun 15, 7667 (2024)
Publication Year :
2024

Abstract

Core-collapse supernovae are explosions of massive stars at the end of their evolution. They are responsible for metal production and for halting star formation, having a significant impact on galaxy evolution. The details of these processes depend on the nature of supernova progenitors, but it is unclear if Type Ic supernovae (without hydrogen or helium lines in their spectra) originate from core-collapses of very massive stars (> 30 Msun) or from less massive stars in binary systems. Here we show that Type II (with hydrogen lines) and Ic supernovae are located in environments with similar molecular gas densities, therefore their progenitors have comparable lifetimes and initial masses. This supports a binary interaction for most Type Ic supernova progenitors, which explains the lack of hydrogen and helium lines. This finding can be implemented in sub-grid prescriptions in numerical cosmological simulations to improve the feedback and chemical mixing.<br />Comment: 9 pages, 3 figures, published in Nature Communications

Details

Database :
arXiv
Journal :
Nat Commun 15, 7667 (2024)
Publication Type :
Report
Accession number :
edsarx.2409.01906
Document Type :
Working Paper
Full Text :
https://doi.org/10.1038/s41467-024-51863-z