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Euclid: quick data release (Q1) -- photometric studies of known transients

Euclid: quick data release (Q1) -- photometric studies of known transients
Euclid: quick data release (Q1) -- photometric studies of known transients
We report on serendipitous Euclid observations of previously known transients, using the Euclid Q1 data release. By cross-matching with the Transient Name Server (TNS) we identify 164 transients that coincide with the data release. Although the Euclid Q1 release only includes single-epoch data, we are able to make Euclid photometric measurements at the location of 161 of these transients. Euclid obtained deep photometric measurements or upper limits of these transients in the $I_E$, $Y_E$, $J_E$, and $H_E$ bands at various phases of the transient light-curves, including before, during, and after the observations of ground-based transient surveys. Approximately 70\% of known transients reported in the six months before the Euclid observation date and with discovery magnitude brighter than 24 were detected in Euclid $\IE$ images. Our observations include one of the earliest near-infrared detections of a Type~Ia supernova (SN 2024pvw) 15 days prior to its peak brightness, and the late-phase (435.9 days post peak) observations of the enigmatic core-collapse SN 2023aew. Euclid deep photometry provides valuable information on the nature of these transients such as their progenitor systems and power sources, with late time observations being a uniquely powerful contribution. In addition, Euclid is able to detect the host galaxies of some transients that were previously classed as hostless. The Q1 data demonstrate the power of the Euclid data even with only single-epoch observations available, as will be the case for much larger areas of sky in the Euclid Wide Survey....
arXiv
Duffy, C.
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Cappellaro, E.
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Botticella, M.T.
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Hook, I.M.
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Gutierrez, C. M.
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Izzo, L.
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Baldi, M.
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Balestra, A.
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Brescia, M.
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Brinchmann, J.
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Camera, S.
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Carbone, C.
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Carretero, J.
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Casas, R.
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Casas, S.
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Castellano, M.
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Castignani, G.
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Cavuoti, S.
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Cimatti, A.
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Colodro-Conde, C.
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Congedo, G.
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Conselice, C.J.
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Conversi, L.
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Copin, Y.
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et al
Duffy, C.
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Cappellaro, E.
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Botticella, M.T.
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Hook, I.M.
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Poidevin, F.
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Moriya, T.J.
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Chrimes, A.A.
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Petrecca, V.
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Paterson, K.
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Goobar, A.
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Galbany, L.
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Kotak, R.
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Gall, C.
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Gutierrez, C. M.
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Tao, C.
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Izzo, L.
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Aghanim, N.
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Altieri, B.
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Amara, A.
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Andreon, S.
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Auricchio, N.
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Baccigalupi, C.
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Biviano, A.
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Bonchi, A.
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Brescia, M.
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Brinchmann, J.
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Camera, S.
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Capobianco, V.
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Carbone, C.
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Carretero, J.
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Casas, R.
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Casas, S.
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Castellano, M.
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Castignani, G.
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Cavuoti, S.
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Cimatti, A.
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Colodro-Conde, C.
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Congedo, G.
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Conselice, C.J.
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Conversi, L.
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Courtois, H.M.
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Sullivan, M.
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Duffy, C., Cappellaro, E. and Botticella, M.T. , et al (2025) Euclid: quick data release (Q1) -- photometric studies of known transients arXiv 27pp. (doi:10.48550/arXiv.2503.15334). (Submitted)

Record type: Monograph (Working Paper)

Abstract

We report on serendipitous Euclid observations of previously known transients, using the Euclid Q1 data release. By cross-matching with the Transient Name Server (TNS) we identify 164 transients that coincide with the data release. Although the Euclid Q1 release only includes single-epoch data, we are able to make Euclid photometric measurements at the location of 161 of these transients. Euclid obtained deep photometric measurements or upper limits of these transients in the $I_E$, $Y_E$, $J_E$, and $H_E$ bands at various phases of the transient light-curves, including before, during, and after the observations of ground-based transient surveys. Approximately 70\% of known transients reported in the six months before the Euclid observation date and with discovery magnitude brighter than 24 were detected in Euclid $\IE$ images. Our observations include one of the earliest near-infrared detections of a Type~Ia supernova (SN 2024pvw) 15 days prior to its peak brightness, and the late-phase (435.9 days post peak) observations of the enigmatic core-collapse SN 2023aew. Euclid deep photometry provides valuable information on the nature of these transients such as their progenitor systems and power sources, with late time observations being a uniquely powerful contribution. In addition, Euclid is able to detect the host galaxies of some transients that were previously classed as hostless. The Q1 data demonstrate the power of the Euclid data even with only single-epoch observations available, as will be the case for much larger areas of sky in the Euclid Wide Survey....

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2503.15334v1 - Author's Original
Available under License Creative Commons Attribution.
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Submitted date: 19 March 2025

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Local EPrints ID: 500876
URI: http://eprints.soton.ac.uk/id/eprint/500876
PURE UUID: facf0bde-43c7-44cf-8a1d-959ef4e1b1d9
ORCID for M. Sullivan: ORCID iD orcid.org/0000-0001-9053-4820

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Date deposited: 14 May 2025 16:55
Last modified: 22 Aug 2025 02:07

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Contributors

Author: C. Duffy
Author: E. Cappellaro
Author: M.T. Botticella
Author: I.M. Hook
Author: F. Poidevin
Author: T.J. Moriya
Author: A.A. Chrimes
Author: V. Petrecca
Author: K. Paterson
Author: A. Goobar
Author: L. Galbany
Author: R. Kotak
Author: C. Gall
Author: C. M. Gutierrez
Author: C. Tao
Author: L. Izzo
Author: N. Aghanim
Author: B. Altieri
Author: A. Amara
Author: S. Andreon
Author: N. Auricchio
Author: C. Baccigalupi
Author: M. Baldi
Author: A. Balestra
Author: S. Bardelli
Author: A. Basset
Author: P. Battaglia
Author: A. Biviano
Author: A. Bonchi
Author: E. Branchini
Author: M. Brescia
Author: J. Brinchmann
Author: S. Camera
Author: V. Capobianco
Author: C. Carbone
Author: J. Carretero
Author: R. Casas
Author: S. Casas
Author: M. Castellano
Author: G. Castignani
Author: S. Cavuoti
Author: A. Cimatti
Author: C. Colodro-Conde
Author: G. Congedo
Author: C.J. Conselice
Author: L. Conversi
Author: Y. Copin
Author: F. Courbin
Author: H.M. Courtois
Author: M. Sullivan ORCID iD
Corporate Author: et al

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