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Supernova host galaxies in the dark energy survey: I. Deep coadds, photometry, and stellar masses

Supernova host galaxies in the dark energy survey: I. Deep coadds, photometry, and stellar masses
Supernova host galaxies in the dark energy survey: I. Deep coadds, photometry, and stellar masses
The 5-yr Dark Energy Survey Supernova Programme (DES-SN) is one of the largest and deepest transient surveys to date in terms of volume and number of supernovae. Identifying and characterizing the host galaxies of transients plays a key role in their classification, the study of their formation mechanisms, and the cosmological analyses. To derive accurate host galaxy properties, we create depth-optimized coadds using single-epoch DES-SN images that are selected based on sky and atmospheric conditions. For each of the five DES-SN seasons, a separate coadd is made from the other four seasons such that each SN has a corresponding deep coadd with no contaminating SN emission. The coadds reach limiting magnitudes of order ∼27 in g band, and have a much smaller magnitude uncertainty than the previous DES-SN host templates, particularly for faint objects. We present the resulting multiband photometry of host galaxies for samples of spectroscopically confirmed type Ia (SNe Ia), core-collapse (CCSNe), and superluminous (SLSNe) as well as rapidly evolving transients (RETs) discovered by DES-SN. We derive host galaxy stellar masses and probabilistically compare stellar-mass distributions to samples from other surveys. We find that the DES spectroscopically confirmed sample of SNe Ia selects preferentially fewer high-mass hosts at high-redshift compared to other surveys, while at low redshift the distributions are consistent. DES CCSNe and SLSNe hosts are similar to other samples, while RET hosts are unlike the hosts of any other transients, although these differences have not been disentangled from selection effects.
techniques: image processing, catalogues, supernovae: general
1365-2966
4040-4060
Wiseman, P.
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Childress, M.
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Kelsey, L.
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Möller, A.
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Gupta, R. R.
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Swann, E.
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Angus, C. R.
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Brout, D.
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Carnero Rosell, A.
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Carollo, D.
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Carrasco Kind, M.
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da Costa, L. N.
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De Vicente, J.
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Desai, S.
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Diehl, H. T.
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Doel, P.
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Eifler, T. F.
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Everett, S.
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Fosalba, P.
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Frieman, J.
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García-Bellido, J.
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Gerdes, D. W.
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Glazebrook, K.
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Gschwend, J.
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Hartley, W. G.
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Hinton, S. R.
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Hollowood, D. L.
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The Dark Energy Survey Collaboration
Wiseman, P.
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Childress, M.
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Kelsey, L.
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Möller, A.
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Gupta, R. R.
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Swann, E.
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Angus, C. R.
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Brout, D.
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Foley, R. J.
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Frohmaier, C.
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Galbany, L.
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Gutiérrez, C. P.
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Inserra, C.
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Kessler, R.
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Lidman, C.
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Buckley-Geer, E.
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Burke, D. L.
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Carnero Rosell, A.
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Carollo, D.
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da Costa, L. N.
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Desai, S.
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Eifler, T. F.
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Everett, S.
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Fosalba, P.
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Frieman, J.
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García-Bellido, J.
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Gaztanaga, E.
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Gerdes, D. W.
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Glazebrook, K.
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Gschwend, J.
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Hinton, S. R.
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Hollowood, D. L.
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The Dark Energy Survey Collaboration (2020) Supernova host galaxies in the dark energy survey: I. Deep coadds, photometry, and stellar masses. Monthly Notices of the Royal Astronomical Society, 495 (4), 4040-4060. (doi:10.1093/mnras/staa1302).

Record type: Article

Abstract

The 5-yr Dark Energy Survey Supernova Programme (DES-SN) is one of the largest and deepest transient surveys to date in terms of volume and number of supernovae. Identifying and characterizing the host galaxies of transients plays a key role in their classification, the study of their formation mechanisms, and the cosmological analyses. To derive accurate host galaxy properties, we create depth-optimized coadds using single-epoch DES-SN images that are selected based on sky and atmospheric conditions. For each of the five DES-SN seasons, a separate coadd is made from the other four seasons such that each SN has a corresponding deep coadd with no contaminating SN emission. The coadds reach limiting magnitudes of order ∼27 in g band, and have a much smaller magnitude uncertainty than the previous DES-SN host templates, particularly for faint objects. We present the resulting multiband photometry of host galaxies for samples of spectroscopically confirmed type Ia (SNe Ia), core-collapse (CCSNe), and superluminous (SLSNe) as well as rapidly evolving transients (RETs) discovered by DES-SN. We derive host galaxy stellar masses and probabilistically compare stellar-mass distributions to samples from other surveys. We find that the DES spectroscopically confirmed sample of SNe Ia selects preferentially fewer high-mass hosts at high-redshift compared to other surveys, while at low redshift the distributions are consistent. DES CCSNe and SLSNe hosts are similar to other samples, while RET hosts are unlike the hosts of any other transients, although these differences have not been disentangled from selection effects.

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e-pub ahead of print date: 19 May 2020
Published date: 1 July 2020
Keywords: techniques: image processing, catalogues, supernovae: general

Identifiers

Local EPrints ID: 470521
URI: http://eprints.soton.ac.uk/id/eprint/470521
ISSN: 1365-2966
PURE UUID: 79c5b9f0-6d4f-45b8-9ac7-9cd439eb6d21
ORCID for P. Wiseman: ORCID iD orcid.org/0000-0002-3073-1512
ORCID for C. Inserra: ORCID iD orcid.org/0000-0002-3968-4409
ORCID for M. Sullivan: ORCID iD orcid.org/0000-0001-9053-4820

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Date deposited: 12 Oct 2022 16:42
Last modified: 17 Mar 2024 03:48

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Contributors

Author: P. Wiseman ORCID iD
Author: M. Childress
Author: L. Kelsey
Author: A. Möller
Author: R. R. Gupta
Author: E. Swann
Author: C. R. Angus
Author: D. Brout
Author: R. J. Foley
Author: C. Frohmaier
Author: L. Galbany
Author: C. P. Gutiérrez
Author: C. Inserra ORCID iD
Author: R. Kessler
Author: C. Lidman
Author: E. Macaulay
Author: R. C. Nichol
Author: M. Pursiainen
Author: M. Sako
Author: D. Scolnic
Author: N. E. Sommer
Author: M. Sullivan ORCID iD
Author: B. E. Tucker
Author: M. Aguena
Author: S. Allam
Author: S. Avila
Author: E. Bertin
Author: E. Buckley-Geer
Author: D. L. Burke
Author: A. Carnero Rosell
Author: D. Carollo
Author: M. Carrasco Kind
Author: L. N. da Costa
Author: J. De Vicente
Author: S. Desai
Author: H. T. Diehl
Author: P. Doel
Author: T. F. Eifler
Author: S. Everett
Author: P. Fosalba
Author: J. Frieman
Author: J. García-Bellido
Author: E. Gaztanaga
Author: D. W. Gerdes
Author: K. Glazebrook
Author: R. A. Gruendl
Author: J. Gschwend
Author: W. G. Hartley
Author: S. R. Hinton
Author: D. L. Hollowood
Corporate Author: The Dark Energy Survey Collaboration

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