The delay time distribution of Type-Ia supernovae in galaxy clusters: the impact of extended star-formation histories
arXiv:2012.00793 · doi:10.1093/mnras/stab493
Abstract
The delay time distribution (DTD) of Type-Ia supernovae (SNe Ia) is important for understanding chemical evolution, SN Ia progenitors, and SN Ia physics. Past estimates of the DTD in galaxy clusters have been deduced from SN Ia rates measured in cluster samples observed at various redshifts, corresponding to different time intervals after a presumed initial brief burst of star formation. A recent analysis of a cluster sample at confirmed indications from previous studies of lower-redshift clusters, that the DTD has a power-law form, , with amplitude , at delay , several times higher than measured in field-galaxy environments. This implied that SNe Ia are somehow produced in larger numbers by the stellar populations in clusters. This conclusion, however, could have been affected by the implicit assumption that the stars were formed in a single brief starburst at high . Here, we re-derive the DTD from the cluster SN Ia data, but relax the single-burst assumption. Instead, we allow for a range of star-formation histories and dust extinctions for each cluster. Via MCMC modeling, we simultaneously fit, using stellar population synthesis models and DTD models, the integrated galaxy-light photometry in several bands, and the SN Ia numbers discovered in each cluster. With these more-realistic assumptions, we find a best-fit DTD with power-law index , and amplitude . We confirm a cluster-environment DTD with a larger amplitude than the field-galaxy DTD, by a factor (at ). Cluster and field DTDs have consistent slopes of .
14 pages, 4 figures, accepted by MNRAS
References in corpus (11)
- The Hubble Ultra Deep Field
- A systematic variation of the stellar initial mass function in early-type galaxies
- The Effects of Stellar Rotation. II. A Comprehensive Set of Starburst99 Models
- IMF shape constraints from stellar populations and dynamics from CALIFA
- The Stellar Initial Mass Function in Early-Type Galaxies From Absorption Line Spectroscopy. IV. A Super-Salpeter IMF in the center of NGC 1407 from Non-Parametric Models
- Assembly of the Red Sequence in Infrared-Selected Galaxy Clusters from the IRAC Shallow Cluster Survey
- Pégase.3: A code for modeling the UV-to-IR/submm spectral and chemical evolution of galaxies with dust
- Spatially resolved variations of the IMF mass normalisation in early-type galaxies as probed by molecular gas kinematics
- Sub one percent mass fractions of young stars in red massive galaxies
- Iron in X-COP: tracing enrichment in cluster outskirts with high accuracy abundance profiles
- See Change: VLT spectroscopy of a sample of high-redshift Type Ia supernova host galaxies
Cited by in corpus (17)
- Rates and delay times of type Ia supernovae in the Dark Energy Survey
- Lensed Type Ia Supernova "Encore" at z=2: The First Instance of Two Multiply-Imaged Supernovae in the Same Host Galaxy
- The metal content of the hot atmospheres of galaxy groups
- Mysterious Odd Radio Circle near the Large Magellanic Cloud -- An Intergalactic Supernova Remnant?
- A bottom-heavy initial mass function for the likely-accreted blue-halo stars of the Milky Way
- Chemical abundances in the outskirts of nearby galaxy groups measured with joint Suzaku and Chandra observations
- Chemical Evolution of Fluorine in the Milky Way
- Galactic Chemical Evolution Models Favor an Extended Type Ia Supernova Delay-Time Distribution
- Environmental Dependence of Type Ia Supernovae in Low-Redshift Galaxy Clusters
- Near-infrared chemical abundances of stars in the Sculptor dwarf galaxy
- A search for transients in the Reionization Lensing Cluster Survey (RELICS): Three new supernovae
- Inference of multi-channel r-process element enrichment in the Milky Way using binary neutron star merger observations
- The Reliability of Type Ia Supernovae Delay Time Distributions Recovered from Galaxy Star Formation Histories
- Characterizing the host galaxies and delay times of Ca-rich gap transients vs 91bg-like SNe and normal Type Ia SNe
- Downsizing revised: Star formation timescales for elliptical galaxies with an environment-dependent IMF and number of SNIa
- The interplay between AGN feedback and precipitation of the intracluster medium in simulations of galaxy groups and clusters
- In medio stat virtus: enrichment history in poor galaxy clusters