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Rates and properties of type Ia supernovae in galaxy clusters within the Dark Energy Survey

Rates and properties of type Ia supernovae in galaxy clusters within the Dark Energy Survey
Rates and properties of type Ia supernovae in galaxy clusters within the Dark Energy Survey
We identify 66 photometrically classified type Ia supernovae (SNe Ia) from the Dark Energy Survey (DES) that have occurred within red-sequence selected galaxy clusters. We compare light-curve and host galaxy properties of the cluster SNe to 1024 DES SNe Ia located in field galaxies, the largest comparison of two such samples at high redshift (z > 0.1). We find that cluster SN light curves decline faster than those in the field (97.7 per cent confidence). However, when limiting these samples to host galaxies of similar colour and mass, there is no significant difference in the SN light curve properties. Motivated by previous detections of a higher-normalised SN Ia delay time distribution in galaxy clusters, we measure the intrinsic rate of SNe Ia in cluster and field environments. We find the average ratio of the SN Ia rate per galaxy between high mass ($10\leq\log\mathrm{(M_{*}/M_{\odot})} \leq 11.25$) cluster and field galaxies to be $0.594 \pm0.068$. This difference is mass-dependent, with the ratio declining with increasing mass, which suggests that the stellar populations in cluster hosts are older than those in field hosts. We show that the mass-normalised rate (or SNe per unit mass) in massive-passive galaxies is consistent between cluster and field environments. Additionally, both of these rates are consistent with rates previously measured in clusters at similar redshifts. We conclude that in massive-passive galaxies, which are the dominant hosts of cluster SNe, the cluster DTD is comparable to the field.
astro-ph.HE
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Weaverdyck, N.
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The Dark Energy Survey Collaboration
Toy, M.
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[Unknown type: UNSPECIFIED]

Record type: UNSPECIFIED

Abstract

We identify 66 photometrically classified type Ia supernovae (SNe Ia) from the Dark Energy Survey (DES) that have occurred within red-sequence selected galaxy clusters. We compare light-curve and host galaxy properties of the cluster SNe to 1024 DES SNe Ia located in field galaxies, the largest comparison of two such samples at high redshift (z > 0.1). We find that cluster SN light curves decline faster than those in the field (97.7 per cent confidence). However, when limiting these samples to host galaxies of similar colour and mass, there is no significant difference in the SN light curve properties. Motivated by previous detections of a higher-normalised SN Ia delay time distribution in galaxy clusters, we measure the intrinsic rate of SNe Ia in cluster and field environments. We find the average ratio of the SN Ia rate per galaxy between high mass ($10\leq\log\mathrm{(M_{*}/M_{\odot})} \leq 11.25$) cluster and field galaxies to be $0.594 \pm0.068$. This difference is mass-dependent, with the ratio declining with increasing mass, which suggests that the stellar populations in cluster hosts are older than those in field hosts. We show that the mass-normalised rate (or SNe per unit mass) in massive-passive galaxies is consistent between cluster and field environments. Additionally, both of these rates are consistent with rates previously measured in clusters at similar redshifts. We conclude that in massive-passive galaxies, which are the dominant hosts of cluster SNe, the cluster DTD is comparable to the field.

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2302.05184v2 - Author's Original
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e-pub ahead of print date: 10 February 2023
Keywords: astro-ph.HE

Identifiers

Local EPrints ID: 484031
URI: http://eprints.soton.ac.uk/id/eprint/484031
PURE UUID: e462c581-b5fe-4bbb-a8eb-1a320e6d9eb7
ORCID for P. Wiseman: ORCID iD orcid.org/0000-0002-3073-1512
ORCID for M. Sullivan: ORCID iD orcid.org/0000-0001-9053-4820
ORCID for M. Smith: ORCID iD orcid.org/0000-0002-3321-1432

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Date deposited: 09 Nov 2023 17:35
Last modified: 18 Mar 2024 03:43

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Contributors

Author: M. Toy
Author: P. Wiseman ORCID iD
Author: M. Sullivan ORCID iD
Author: C. Frohmaier
Author: O. Graur
Author: A. Palmese
Author: B. Popovic
Author: T.M. Davis
Author: L. Galbany
Author: L. Kelsey
Author: C. Lidman
Author: D. Scolnic
Author: S. Allam
Author: S. Desai
Author: T.M.C. Abbott
Author: M. Aguena
Author: O. Alves
Author: J. Annis
Author: D. Bacon
Author: E. Bertin
Author: D. Brooks
Author: D.L. Burke
Author: A. Carnero Rosell
Author: M. Carrasco Kind
Author: J. Carretero
Author: F.J. Castander
Author: C. Conselice
Author: L.N. da Costa
Author: M.E.S. Pereira
Author: J. De Vicente
Author: H.T. Diehl
Author: P. Doel
Author: S. Everett
Author: I. Ferrero
Author: J. Frieman
Author: D.W. Gerdes
Author: D. Gruen
Author: R.A. Gruendl
Author: G. Gutierrez
Author: S.R. Hinton
Author: D.L. Hollowood
Author: K. Honscheid
Author: D.J. James
Author: K. Kuehn
Author: N. Kuropatkin
Author: J.L. Marshall
Author: P. Melchior
Author: J. Mena-Fernández
Author: F. Menanteau
Author: R. Miquel
Author: A. Pieres
Author: A.A. Plazas Malagón
Author: A.K. Romer
Author: E. Sanchez
Author: V. Scarpine
Author: I. Sevilla-Noarbe
Author: M. Smith ORCID iD
Author: M. Soares-Santos
Author: E. Suchyta
Author: G. Tarle
Author: C. To
Author: N. Weaverdyck
Corporate Author: The Dark Energy Survey Collaboration

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