Further evidence that galaxy age drives observed type Ia supernova luminosity differences
arXiv:2302.05341 · doi:10.1093/mnras/stad488
Abstract
Type Ia supernovae (SNe Ia) are explosions of white dwarf stars that facilitate exquisite measurements of cosmological expansion history, but improvements in accuracy and precision are hindered by observational biases. Of particular concern is the apparent difference in the corrected brightnesses of SNe Ia in different host galaxy environments. SNe Ia in more massive, passive, older environments appear brighter after having been standardized by their light-curve properties. The luminosity difference commonly takes the form of a step function. Recent works imply that environmental characteristics that trace the age of the stellar population in the vicinity of SNe show the largest steps. Here we use simulations of SN Ia populations to test the impact of using different tracers and investigate promising new models of the step. We test models with a total-to-selective dust extinction ratio that changes between young and old SN Ia host galaxies, as well as an intrinsic luminosity difference between SNe from young and old progenitors. The data are well replicated by a model driven by a galaxy-age varying and no intrinsic SN luminosity difference, and we find that specific star-formation rate measured locally to the SN is a relatively pure tracer of this galaxy age difference. We cannot rule out an intrinsic difference causing part of the observed step and show that if luminosity differences are caused by multiple drivers then no single environmental measurement is able to accurately trace them. We encourage the use of multiple tracers in luminosity corrections to negate this issue.
9 pages, 3 figures. Accepted for publication in MNRAS
References in corpus (19)
- The Pantheon+ Analysis: Cosmological Constraints
- Rates and properties of type Ia supernovae as a function of mass and star-formation in their host galaxies
- SNLS3: Constraints on Dark Energy Combining the Supernova Legacy Survey Three Year Data with Other Probes
- Ages of Type Ia Supernovae Over Cosmic Time
- Improved Treatment of Host-Galaxy Correlations in Cosmological Analyses With Type Ia Supernovae
- Think Global, Act Local: The Influence of Environment Age and Host Mass on Type Ia Supernova Light Curves
- The Carnegie Supernova Project-I: Correlation Between Type Ia Supernovae and Their Host Galaxies from Optical to Near-Infrared Bands
- Cosmological Results from the RAISIN Survey: Using Type Ia Supernovae in the Near Infrared as a Novel Path to Measure the Dark Energy Equation of State
- Testing the Consistency of Dust Laws in SN Ia Host Galaxies: A BayeSN Examination of Foundation DR1
- Rates and delay times of type Ia supernovae in the Dark Energy Survey
- Near-IR Type Ia SN distances: host galaxy extinction and mass-step corrections revisited
- Accuracy of environmental tracers and consequence for determining the Type Ia Supernovae magnitude step
- Concerning Colour: The Effect of Environment on Type Ia Supernova Colour in the Dark Energy Survey
- A galaxy-driven model of type Ia supernova luminosity variations
- Supernovae and their host galaxies -- VII. The diversity of Type Ia supernova progenitors
- Measuring Cosmological Parameters with Type Ia Supernovae in redMaGiC galaxies
- Constraining the SN Ia Host Galaxy Dust Law Distribution and Mass Step: Hierarchical BayeSN Analysis of Optical and Near-Infrared Light Curves
- Host Galaxy Mass Combined with Local Stellar Age Improve Type Ia Supernovae Distances
- Stellar Populations in type Ia supernova host galaxies at intermediate-high redshift: Star formation and metallicity enrichment histories
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- The CosmoVerse White Paper: Addressing observational tensions in cosmology with systematics and fundamental physics
- ZTF SN Ia DR2: Colour standardisation of Type Ia Supernovae and its dependence on environment
- The Dark Energy Survey Supernova Program: Cosmological Analysis and Systematic Uncertainties
- Revisiting progenitor-age dependence of type Ia supernova luminosity standardization process
- Using Rest-Frame Optical and NIR Data from the RAISIN Survey to Explore the Redshift Evolution of Dust Laws in SN Ia Host Galaxies
- Environmental Dependence of Type Ia Supernovae in Low-Redshift Galaxy Clusters
- ZTF SN Ia DR2: Properties of the low-mass host galaxies of Type Ia supernovae in a volume-limited sample
- BayeSN and SALT: A Comparison of Dust Inference Across SN Ia Light-curve Models with DES5YR
- pop-cosmos: Insights from generative modeling of a deep, infrared-selected galaxy population
- Merging White Dwarf Binaries Produce Type Ia Supernovae in Elliptical Galaxies
- Stretch to stretch, dust to dust: lower-value local measurement from two-population modelling of type Ia supernovae
- Characterising the Standardisation Properties of Type Ia Supernovae in the z band with Hierarchical Bayesian Modelling
- ZTF SN~Ia DR2: Cosmology-independent constraints on Type Ia supernova standardisation from supernova siblings
- ZTF SN Ia DR2 follow-up: Exploring the origin of the Type Ia supernova host galaxy step through Si II velocities
- Testing the Constancy of Type Ia Supernova Luminosities with Gaussian Process
- CIGaRS I: Combined simulation-based inference from type Ia supernovae and host photometry
- Distribution of Europium in The Milky Way Disk; Its Connection to Planetary Habitability and The Source of The R-Process
- The evolution of relative frequencies of ONe and CO SNe Ia