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The Dark Energy Survey 5-year photometrically classified type Ia supernovae without host-galaxy redshifts

The Dark Energy Survey 5-year photometrically classified type Ia supernovae without host-galaxy redshifts
The Dark Energy Survey 5-year photometrically classified type Ia supernovae without host-galaxy redshifts
Current and future Type Ia Supernova (SN Ia) surveys will need to adopt new approaches to classifying SNe and obtaining their redshifts without spectra if they wish to reach their full potential. We present here a novel approach that uses only photometry to identify SNe Ia in the 5-year Dark Energy Survey (DES) dataset using the SuperNNova classifier. Our approach, which does not rely on any information from the SN host-galaxy, recovers SNe Ia that might otherwise be lost due to a lack of an identifiable host. We select 2,298 high-quality SNe Ia from the DES 5-year dataset an almost complete sample of detected SNe Ia. More than 700 of these have no spectroscopic host redshift and are potentially new SNIa compared to the DES-SN5YR cosmology analysis. To analyse these SNe Ia, we derive their redshifts and properties using only their light-curves with a modified version of the SALT2 light-curve fitter. Compared to other DES SN Ia samples with spectroscopic redshifts, our new sample has in average higher redshift, bluer and broader light-curves, and fainter host-galaxies. Future surveys such as LSST will also face an additional challenge, the scarcity of spectroscopic resources for follow-up. When applying our novel method to DES data, we reduce the need for follow-up by a factor of four and three for host-galaxy and live SN respectively compared to earlier approaches. Our novel method thus leads to better optimisation of spectroscopic resources for follow-up.
astro-ph.CO
1365-2966
2073-2088
Möller, A.
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Wiseman, P.
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Smith, M.
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Lidman, C.
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Davis, T.M.
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Kessler, R.
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Sako, M.
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Sullivan, M.
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Bacon, D.
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Brooks, D.
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Castander, F.J.
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Desai, S.
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Giannini, G.
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Gruendl, R.A.
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Gutierrez, G.
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Hinton, S.R.
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Hollowood, D.L.
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Honscheid, K.
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James, D.J.
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Kuehn, K.
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Lahav, O.
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Lee, S.
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Marshall, J.L.
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Mena-Fernández, J.
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Menanteau, F.
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Miquel, R.
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Myles, J.
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Ogando, R.L.C.
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Palmese, A.
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et al.
Möller, A.
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Wiseman, P.
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Smith, M.
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Lidman, C.
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Davis, T.M.
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Kessler, R.
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Sako, M.
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Sullivan, M.
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Galbany, L.
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Lee, J.
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Nichol, R.C.
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Tucker, B.E.
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Abbott, T.M.C.
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Aguena, M.
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Allam, S.
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Alves, O.
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Andrade-Oliveira, F.
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Bacon, D.
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Bertin, E.
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Brooks, D.
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Rosell, A. Carnero
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Castander, F.J.
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Desai, S.
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Everett, S.
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Friedel, D.
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Frieman, J.
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García-Bellido, J.
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Gaztanaga, E.
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Giannini, G.
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Gruendl, R.A.
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Gutierrez, G.
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Hinton, S.R.
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Hollowood, D.L.
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Honscheid, K.
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James, D.J.
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Kuehn, K.
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Lahav, O.
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Lee, S.
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Marshall, J.L.
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Mena-Fernández, J.
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Menanteau, F.
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Miquel, R.
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Myles, J.
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Ogando, R.L.C.
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Palmese, A.
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Pieres, A.
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Möller, A., Wiseman, P. and Smith, M. , et al. (2024) The Dark Energy Survey 5-year photometrically classified type Ia supernovae without host-galaxy redshifts. Monthly Notices of the Royal Astronomical Society, 533 (2), 2073-2088. (doi:10.1093/mnras/stae1953).

Record type: Article

Abstract

Current and future Type Ia Supernova (SN Ia) surveys will need to adopt new approaches to classifying SNe and obtaining their redshifts without spectra if they wish to reach their full potential. We present here a novel approach that uses only photometry to identify SNe Ia in the 5-year Dark Energy Survey (DES) dataset using the SuperNNova classifier. Our approach, which does not rely on any information from the SN host-galaxy, recovers SNe Ia that might otherwise be lost due to a lack of an identifiable host. We select 2,298 high-quality SNe Ia from the DES 5-year dataset an almost complete sample of detected SNe Ia. More than 700 of these have no spectroscopic host redshift and are potentially new SNIa compared to the DES-SN5YR cosmology analysis. To analyse these SNe Ia, we derive their redshifts and properties using only their light-curves with a modified version of the SALT2 light-curve fitter. Compared to other DES SN Ia samples with spectroscopic redshifts, our new sample has in average higher redshift, bluer and broader light-curves, and fainter host-galaxies. Future surveys such as LSST will also face an additional challenge, the scarcity of spectroscopic resources for follow-up. When applying our novel method to DES data, we reduce the need for follow-up by a factor of four and three for host-galaxy and live SN respectively compared to earlier approaches. Our novel method thus leads to better optimisation of spectroscopic resources for follow-up.

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Accepted/In Press date: 7 August 2024
e-pub ahead of print date: 13 August 2024
Published date: 24 August 2024
Keywords: astro-ph.CO

Identifiers

Local EPrints ID: 496293
URI: http://eprints.soton.ac.uk/id/eprint/496293
ISSN: 1365-2966
PURE UUID: f1775b5d-07e2-4d70-9e61-336d22d0578c
ORCID for P. Wiseman: ORCID iD orcid.org/0000-0002-3073-1512
ORCID for M. Sullivan: ORCID iD orcid.org/0000-0001-9053-4820

Catalogue record

Date deposited: 11 Dec 2024 17:30
Last modified: 12 Dec 2024 02:53

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Contributors

Author: A. Möller
Author: P. Wiseman ORCID iD
Author: M. Smith
Author: C. Lidman
Author: T.M. Davis
Author: R. Kessler
Author: M. Sako
Author: M. Sullivan ORCID iD
Author: L. Galbany
Author: J. Lee
Author: R.C. Nichol
Author: B.O. Sánchez
Author: M. Vincenzi
Author: B.E. Tucker
Author: T.M.C. Abbott
Author: M. Aguena
Author: S. Allam
Author: O. Alves
Author: F. Andrade-Oliveira
Author: D. Bacon
Author: E. Bertin
Author: D. Brooks
Author: A. Carnero Rosell
Author: F.J. Castander
Author: S. Desai
Author: H.T. Diehl
Author: S. Everett
Author: I. Ferrero
Author: D. Friedel
Author: J. Frieman
Author: J. García-Bellido
Author: E. Gaztanaga
Author: G. Giannini
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: O. Lahav
Author: S. Lee
Author: J.L. Marshall
Author: J. Mena-Fernández
Author: F. Menanteau
Author: R. Miquel
Author: J. Myles
Author: R.L.C. Ogando
Author: A. Palmese
Author: A. Pieres
Corporate Author: et al.

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