Testing the effect of progenitor's metallicity on Ni mass and constraining the progenitor scenarios in Type Ia supernovae
arXiv:2509.09069 · doi:10.1051/0004-6361/202555000
Abstract
The analytical model found that the intrinsic variation in the initial metallicity of the Type Ia supernova (SN Ia) progenitor stars () translates into a 25% variation in the Ni mass synthesized and, therefore, 0.2 mag difference in the observed peak luminosity of SNe Ia. Previous observational studies used the currently-observed global gas-phase metallicity of host galaxies, instead of used in the model, and showed a higher scatter in the Ni mass measurements compared to the model prediction. Here, we use of 34 normal SNe Ia and employ recent SN Ia explosion models with various configurations to cover the observed Ni mass range. Unlike previous studies, our sample covers the range, where most of the effect occurs. Linear regression returns a slope of 0.02+-0.03, which is the opposite trend to the analytical model, but at at low statistical significance level. We find that comparing our sample with SN Ia explosion models on the --Ni mass diagram allows us to constrain the progenitor scenarios. We also explore other chemical composition indicators. For , our sample follows the trend predicted by the analytical models, but at a low significance level. Noticeably, shows the opposite trend and a clear gap. When we split the sample at = 0.35 , we find a 3 difference in the weighted-means of the Ni mass. Lastly, SNe Ia in different groups show a difference of 0.14+-0.09 mag in the standardized luminosity. The present work highlights a holistic approach (from the progenitor star to the explosion with SN Ia and host galaxy observational data) to understand the underlying physics of SNe Ia for more accurate and precise cosmology.
11 pages including 1 page of Appendix, 4 figures + 1 App figure, and 3 tables; A&A accepted (shortened the abstract to fit here)
References in corpus (17)
- Array Programming with NumPy
- A Comprehensive Measurement of the Local Value of the Hubble Constant with 1 km/s/Mpc Uncertainty from the Hubble Space Telescope and the SH0ES Team
- The Zwicky Transient Facility: System Overview, Performance, and First Results
- Some Aspects of Measurement Error in Linear Regression of Astronomical Data
- The Zwicky Transient Facility: Science Objectives
- DESI DR2 Results II: Measurements of Baryon Acoustic Oscillations and Cosmological Constraints
- Oxygen Abundances in Nearby Stars. Clues to the formation and evolution of the Galactic disk
- Type Ia Supernova Explosions in Binary Systems: A Review
- Deflagrations in hybrid CONe white dwarfs: a route to explain the faint Type Iax supernova 2008ha
- Early-type Host Galaxies of Type Ia Supernovae. II. Evidence for Luminosity Evolution in Supernova Cosmology
- Metallicity as a source of dispersion in the SNIa bolometric light curve luminosity-width relationship
- The effects of different Type Ia SN yields on Milky Way chemical evolution
- Metallicity-dependent nucleosynthetic yields of Type Ia supernovae originating from double detonations of sub-M white dwarfs
- ZTF SN Ia DR2: Environmental dependencies of stretch and luminosity of a volume limited sample of 1,000 Type Ia Supernovae
- Aperture-corrected spectroscopic type Ia supernova host galaxy properties
- Stellar Populations in type Ia supernova host galaxies at intermediate-high redshift: Star formation and metallicity enrichment histories
- Using chemical evolution models of the Milky Way disk to constrain Type Ia supernova progenitors