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dc.date.accessioned2023-02-22T19:16:06Z
dc.date.available2023-02-22T19:16:06Z
dc.date.created2023-02-07T14:12:23Z
dc.date.issued2022
dc.identifier.citationMoriya, T. J. Inserra, C. Tanaka, M. Cappellaro, E Della Valle, M Hook, I. Kotak, R. Longo, G. Mannucci, F. Mattila, S. Tao, C Altieri, B. Amara, Adam Auricchio, N. Bonino, D. Branchini, E. Brescia, Massimo Brinchmann, Jarle Camera, S. Capobianco, V. Carbone, Carmelita Carretero, J. Castellano, M. Cavuoti, Stefano Cimatti, Andrea Clédassou, Rodolphe Congedo, G. Conselice, Christopher J. Conversi, L. Copin, Y. Corcione, L. Courbin, F. Cropper, Mark Da Silva, A. Degaudenzi, H. Douspis, M. Dubath, F. Duncan, C. A. J. Dupac, X. Dusini, S. Ealet, Anne Farrens, S. Ferriol, S. Frailis, M. Franceschi, E. Fumana, M. Garilli, B. Gillard, W. Gillis, B. Giocoli, C. Grazian, A. Grupp, F. Haugan, Stein Vidar Hagfors Holmes, W. Hormuth, F. Hornstrup, Allan Jahnke, Knud Kermiche, S. Kiessling, A. Kilbinger, M. Kitching, Thomas D. Kurki-Suonio, Hannu Ligori, S. Lilje, Per Barth Lloro, I. Maiorano, E. Mansutti, O. Marggraf, O. Markovic, K. Marulli, F. Massey, R. McCracken, H. J. Melchior, M. Meneghetti, M. Meylan, G. Moresco, M. Moscardini, L. Munari, E. Niemi, S. M. Padilla, C. Paltani, S. Pasian, F. Pedersen, Kristian Pettorino, V. Poncet, M. Popa, L. Raison, F. Rhodes, Jason D. Riccio, G. Rossetti, E. Saglia, R. Sartoris, B. Schneider, Peter Secroun, A. Seidel, G. Sirignano, C. Sirri, G. Stanco, L. Tallada-Crespí, P. Taylor, A. N. Tereno, Ismael Toledo-Moreo, Rafael Torradeflot, F. Wang, Y. Zamorani, G. Zoubian, J. Andreon, S. Scottez, V. Morris, P. W. . Euclid: Searching for pair-instability supernovae with the Deep Survey. Astronomy and Astrophysics (A & A). 2022, 666
dc.identifier.urihttp://hdl.handle.net/10852/100385
dc.description.abstractPair-instability supernovae are theorized supernovae that have not yet been observationally confirmed. They are predicted to exist in low-metallicity environments. Because overall metallicity becomes lower at higher redshifts, deep near-infrared transient surveys probing high-redshift supernovae are suitable to discover pair-instability supernovae. The Euclid satellite, which is planned launch in 2023, has a near-infrared wide-field instrument that is suitable for a high-redshift supernova survey. The Euclid Deep Survey is planned to make regular observations of three Euclid Deep Fields (40 deg 2 in total) spanning Euclid ’s six-year primary mission period. While the observations of the Euclid Deep Fields are not frequent, we show that the predicted long duration of pair-instability supernovae would allow us to search for high-redshift pair-instability supernovae with the Euclid Deep Survey. Based on the current observational plan of the Euclid mission, we conduct survey simulations in order to estimate the expected numbers of pair-instability supernova discoveries. We find that up to several hundred pair-instability supernovae at z  ≲ 3.5 can be discovered within the Euclid Deep Survey. We also show that pair-instability supernova candidates can be efficiently identified by their duration and color, which can be determined with the current Euclid Deep Survey plan. We conclude that the Euclid mission can lead to the first confirmation of pair-instability supernovae if their event rates are as high as those predicted by recent theoretical studies. We also update the expected numbers of superluminous supernova discoveries in the Euclid Deep Survey based on the latest observational plan.
dc.languageEN
dc.rightsAttribution 4.0 International
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/
dc.titleEuclid: Searching for pair-instability supernovae with the Deep Survey
dc.title.alternativeENEngelskEnglishEuclid: Searching for pair-instability supernovae with the Deep Survey
dc.typeJournal article
dc.creator.authorMoriya, T. J.
dc.creator.authorInserra, C.
dc.creator.authorTanaka, M.
dc.creator.authorCappellaro, E
dc.creator.authorDella Valle, M
dc.creator.authorHook, I.
dc.creator.authorKotak, R.
dc.creator.authorLongo, G.
dc.creator.authorMannucci, F.
dc.creator.authorMattila, S.
dc.creator.authorTao, C
dc.creator.authorAltieri, B.
dc.creator.authorAmara, Adam
dc.creator.authorAuricchio, N.
dc.creator.authorBonino, D.
dc.creator.authorBranchini, E.
dc.creator.authorBrescia, Massimo
dc.creator.authorBrinchmann, Jarle
dc.creator.authorCamera, S.
dc.creator.authorCapobianco, V.
dc.creator.authorCarbone, Carmelita
dc.creator.authorCarretero, J.
dc.creator.authorCastellano, M.
dc.creator.authorCavuoti, Stefano
dc.creator.authorCimatti, Andrea
dc.creator.authorClédassou, Rodolphe
dc.creator.authorCongedo, G.
dc.creator.authorConselice, Christopher J.
dc.creator.authorConversi, L.
dc.creator.authorCopin, Y.
dc.creator.authorCorcione, L.
dc.creator.authorCourbin, F.
dc.creator.authorCropper, Mark
dc.creator.authorDa Silva, A.
dc.creator.authorDegaudenzi, H.
dc.creator.authorDouspis, M.
dc.creator.authorDubath, F.
dc.creator.authorDuncan, C. A. J.
dc.creator.authorDupac, X.
dc.creator.authorDusini, S.
dc.creator.authorEalet, Anne
dc.creator.authorFarrens, S.
dc.creator.authorFerriol, S.
dc.creator.authorFrailis, M.
dc.creator.authorFranceschi, E.
dc.creator.authorFumana, M.
dc.creator.authorGarilli, B.
dc.creator.authorGillard, W.
dc.creator.authorGillis, B.
dc.creator.authorGiocoli, C.
dc.creator.authorGrazian, A.
dc.creator.authorGrupp, F.
dc.creator.authorHaugan, Stein Vidar Hagfors
dc.creator.authorHolmes, W.
dc.creator.authorHormuth, F.
dc.creator.authorHornstrup, Allan
dc.creator.authorJahnke, Knud
dc.creator.authorKermiche, S.
dc.creator.authorKiessling, A.
dc.creator.authorKilbinger, M.
dc.creator.authorKitching, Thomas D.
dc.creator.authorKurki-Suonio, Hannu
dc.creator.authorLigori, S.
dc.creator.authorLilje, Per Barth
dc.creator.authorLloro, I.
dc.creator.authorMaiorano, E.
dc.creator.authorMansutti, O.
dc.creator.authorMarggraf, O.
dc.creator.authorMarkovic, K.
dc.creator.authorMarulli, F.
dc.creator.authorMassey, R.
dc.creator.authorMcCracken, H. J.
dc.creator.authorMelchior, M.
dc.creator.authorMeneghetti, M.
dc.creator.authorMeylan, G.
dc.creator.authorMoresco, M.
dc.creator.authorMoscardini, L.
dc.creator.authorMunari, E.
dc.creator.authorNiemi, S. M.
dc.creator.authorPadilla, C.
dc.creator.authorPaltani, S.
dc.creator.authorPasian, F.
dc.creator.authorPedersen, Kristian
dc.creator.authorPettorino, V.
dc.creator.authorPoncet, M.
dc.creator.authorPopa, L.
dc.creator.authorRaison, F.
dc.creator.authorRhodes, Jason D.
dc.creator.authorRiccio, G.
dc.creator.authorRossetti, E.
dc.creator.authorSaglia, R.
dc.creator.authorSartoris, B.
dc.creator.authorSchneider, Peter
dc.creator.authorSecroun, A.
dc.creator.authorSeidel, G.
dc.creator.authorSirignano, C.
dc.creator.authorSirri, G.
dc.creator.authorStanco, L.
dc.creator.authorTallada-Crespí, P.
dc.creator.authorTaylor, A. N.
dc.creator.authorTereno, Ismael
dc.creator.authorToledo-Moreo, Rafael
dc.creator.authorTorradeflot, F.
dc.creator.authorWang, Y.
dc.creator.authorZamorani, G.
dc.creator.authorZoubian, J.
dc.creator.authorAndreon, S.
dc.creator.authorScottez, V.
dc.creator.authorMorris, P. W.
cristin.unitcode185,15,3,0
cristin.unitnameInstitutt for teoretisk astrofysikk
cristin.ispublishedtrue
cristin.fulltextoriginal
cristin.qualitycode2
dc.identifier.cristin2123759
dc.identifier.bibliographiccitationinfo:ofi/fmt:kev:mtx:ctx&ctx_ver=Z39.88-2004&rft_val_fmt=info:ofi/fmt:kev:mtx:journal&rft.jtitle=Astronomy and Astrophysics (A & A)&rft.volume=666&rft.spage=&rft.date=2022
dc.identifier.jtitleAstronomy and Astrophysics (A & A)
dc.identifier.volume666
dc.identifier.pagecount12
dc.identifier.doihttps://doi.org/10.1051/0004-6361/202243810
dc.subject.nviVDP::Astrofysikk, astronomi: 438
dc.type.documentTidsskriftartikkel
dc.type.peerreviewedPeer reviewed
dc.source.issn0004-6361
dc.type.versionPublishedVersion
cristin.articleidA157
dc.relation.projectNFR/325113
dc.relation.projectNFR/287772


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