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Constraining SN Ia Progenitors from the Observed Fe-peak Elemental Abundances in the Milky Way Dwarf Galaxy Satellites (2024)
Preprint / Working Paper
Alexander, R., & Vincenzo, F. Constraining SN Ia Progenitors from the Observed Fe-peak Elemental Abundances in the Milky Way Dwarf Galaxy Satellites

Chemical abundances of iron-peak elements in the red giants of ultra-faint dwarf galaxies (UFD) and dwarf spheroidal galaxies (dSph) are among the best diagnostics in the cosmos to probe the origin of Type Ia Supernovae (SNe Ia). We incorporate metal... Read More about Constraining SN Ia Progenitors from the Observed Fe-peak Elemental Abundances in the Milky Way Dwarf Galaxy Satellites.

CLASSY IX: The Chemical Evolution of the Ne, S, Cl, and Ar Elements (2024)
Journal Article
Arellano-Córdova, K., Berg, D., Mingozzi, M., James, B., Rogers, N., Skillman, E., …Wofford, A. (2024). CLASSY IX: The Chemical Evolution of the Ne, S, Cl, and Ar Elements. The Astrophysical journal, 968(2), Article 98. https://doi.org/10.3847/1538-4357/ad34cf

To study the chemical evolution across cosmic epochs, we investigate Ne, S, Cl, and Ar abundance patterns in the COS Legacy Archive Spectroscopic SurveY (CLASSY). CLASSY comprises local star-forming galaxies (0.02 < z < 0.18) with enhanced star-forma... Read More about CLASSY IX: The Chemical Evolution of the Ne, S, Cl, and Ar Elements.