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dc.date.accessioned2022-06-21T15:08:24Z
dc.date.available2022-06-21T15:08:24Z
dc.date.created2022-06-13T09:40:21Z
dc.date.issued2022
dc.identifier.citationCagliari, Marina S. Granett, B.R. Guzzo, L. Bolzonella, M. Pozzetti, L. Tutusaus, I. Camera, S. Amara, A. Auricchio, N. Bender, R. Bodendorf, C. Bonino, D. Branchini, E. Brescia, Massimo Capobianco, V. Carbone, C. Carretero, J. Castander, F.J. Castellano, M. Cavuoti, Stefano Cimatti, A. Cledassou, R. Congedo, G. Conselice, C.J. Conversi, L. Copin, Y. Corcione, L. Cropper, M. Degaudenzi, H. Douspis, M. Dubath, F. Dusini, S. Ealet, A. Ferriol, S. Fourmanoit, N. Frailis, M. Franceschi, E. Franzetti, P. Garilli, B. Giocoli, C. Grazian, A. Grupp, F. Haugan, Stein Vidar Hagfors Hoekstra, H. Holmes, W. Hormuth, F. Hudelot, P. Jahnke, K. Kermiche, S. Kiessling, A. Kilbinger, M. Kitching, T. Kümmel, M. Kunz, M. Kurki-Suonio, Hannu Ligori, S. Lilje, Per Barth Lloro, I. Maiorano, E. Mansutti, O. Marggraf, O. Markovic, K. Massey, Richard Meneghetti, M. Merlin, E. Meylan, G. Moresco, M. Moscardini, L. Niemi, S.M. Padilla, C. Paltani, S. Pasian, F. Pedersen, K. Percival, W.J. Pettorino, V. Pires, S. Poncet, M. Popa, L. Raison, F. Rebolo, R. Rhodes, J. Rix, H.-W. Roncarelli, M. Rossetti, E. Saglia, R. Scaramella, R. Schneider, P. Scodeggio, M. Secroun, A. Seidel, G. Serrano, S. Sirignano, C. Sirri, G. Tavagnacco, D. Taylor, A.N. Tereno, I. Toledo-Moreo, R. Valentijn, E.A. Valenziano, L. Wang, Y. Welikala, N. Weller, J. Zamorani, G. Zoubian, J. Baldi, M. Farinelli, R. Medinaceli, E. Mei, S. Polenta, G. Romelli, E. Vassallo, T. Humphrey, A. . Euclid: Constraining ensemble photometric redshift distributions with stacked spectroscopy. Astronomy and Astrophysics (A & A). 2022, 660
dc.identifier.urihttp://hdl.handle.net/10852/94424
dc.description.abstractContext. The ESA Euclid mission will produce photometric galaxy samples over 15 000 square degrees of the sky that will be rich for clustering and weak lensing statistics. The accuracy of the cosmological constraints derived from these measurements will depend on the knowledge of the underlying redshift distributions based on photometric redshift calibrations. Aims. A new approach is proposed to use the stacked spectra from Euclid slitless spectroscopy to augment broad-band photometric information to constrain the redshift distribution with spectral energy distribution fitting. The high spectral resolution available in the stacked spectra complements the photometry and helps to break the colour-redshift degeneracy and constrain the redshift distribution of galaxy samples. Methods. We modelled the stacked spectra as a linear mixture of spectral templates. The mixture may be inverted to infer the underlying redshift distribution using constrained regression algorithms. We demonstrate the method on simulated Vera C. Rubin Observatory and Euclid mock survey data sets based on the Euclid Flagship mock galaxy catalogue. We assess the accuracy of the reconstruction by considering the inference of the baryon acoustic scale from angular two-point correlation function measurements. Results. We selected mock photometric galaxy samples at redshift z  > 1 using the self-organising map algorithm. Considering the idealised case without dust attenuation, we find that the redshift distributions of these samples can be recovered with 0.5% accuracy on the baryon acoustic scale. The estimates are not significantly degraded by the spectroscopic measurement noise due to the large sample size. However, the error degrades to 2% when the dust attenuation model is left free. We find that the colour degeneracies introduced by attenuation limit the accuracy considering the wavelength coverage of Euclid near-infrared spectroscopy.
dc.languageEN
dc.titleEuclid: Constraining ensemble photometric redshift distributions with stacked spectroscopy
dc.title.alternativeENEngelskEnglishEuclid: Constraining ensemble photometric redshift distributions with stacked spectroscopy
dc.typeJournal article
dc.creator.authorCagliari, Marina S.
dc.creator.authorGranett, B.R.
dc.creator.authorGuzzo, L.
dc.creator.authorBolzonella, M.
dc.creator.authorPozzetti, L.
dc.creator.authorTutusaus, I.
dc.creator.authorCamera, S.
dc.creator.authorAmara, A.
dc.creator.authorAuricchio, N.
dc.creator.authorBender, R.
dc.creator.authorBodendorf, C.
dc.creator.authorBonino, D.
dc.creator.authorBranchini, E.
dc.creator.authorBrescia, Massimo
dc.creator.authorCapobianco, V.
dc.creator.authorCarbone, C.
dc.creator.authorCarretero, J.
dc.creator.authorCastander, F.J.
dc.creator.authorCastellano, M.
dc.creator.authorCavuoti, Stefano
dc.creator.authorCimatti, A.
dc.creator.authorCledassou, R.
dc.creator.authorCongedo, G.
dc.creator.authorConselice, C.J.
dc.creator.authorConversi, L.
dc.creator.authorCopin, Y.
dc.creator.authorCorcione, L.
dc.creator.authorCropper, M.
dc.creator.authorDegaudenzi, H.
dc.creator.authorDouspis, M.
dc.creator.authorDubath, F.
dc.creator.authorDusini, S.
dc.creator.authorEalet, A.
dc.creator.authorFerriol, S.
dc.creator.authorFourmanoit, N.
dc.creator.authorFrailis, M.
dc.creator.authorFranceschi, E.
dc.creator.authorFranzetti, P.
dc.creator.authorGarilli, B.
dc.creator.authorGiocoli, C.
dc.creator.authorGrazian, A.
dc.creator.authorGrupp, F.
dc.creator.authorHaugan, Stein Vidar Hagfors
dc.creator.authorHoekstra, H.
dc.creator.authorHolmes, W.
dc.creator.authorHormuth, F.
dc.creator.authorHudelot, P.
dc.creator.authorJahnke, K.
dc.creator.authorKermiche, S.
dc.creator.authorKiessling, A.
dc.creator.authorKilbinger, M.
dc.creator.authorKitching, T.
dc.creator.authorKümmel, M.
dc.creator.authorKunz, M.
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.authorMassey, Richard
dc.creator.authorMeneghetti, M.
dc.creator.authorMerlin, E.
dc.creator.authorMeylan, G.
dc.creator.authorMoresco, M.
dc.creator.authorMoscardini, L.
dc.creator.authorNiemi, S.M.
dc.creator.authorPadilla, C.
dc.creator.authorPaltani, S.
dc.creator.authorPasian, F.
dc.creator.authorPedersen, K.
dc.creator.authorPercival, W.J.
dc.creator.authorPettorino, V.
dc.creator.authorPires, S.
dc.creator.authorPoncet, M.
dc.creator.authorPopa, L.
dc.creator.authorRaison, F.
dc.creator.authorRebolo, R.
dc.creator.authorRhodes, J.
dc.creator.authorRix, H.-W.
dc.creator.authorRoncarelli, M.
dc.creator.authorRossetti, E.
dc.creator.authorSaglia, R.
dc.creator.authorScaramella, R.
dc.creator.authorSchneider, P.
dc.creator.authorScodeggio, M.
dc.creator.authorSecroun, A.
dc.creator.authorSeidel, G.
dc.creator.authorSerrano, S.
dc.creator.authorSirignano, C.
dc.creator.authorSirri, G.
dc.creator.authorTavagnacco, D.
dc.creator.authorTaylor, A.N.
dc.creator.authorTereno, I.
dc.creator.authorToledo-Moreo, R.
dc.creator.authorValentijn, E.A.
dc.creator.authorValenziano, L.
dc.creator.authorWang, Y.
dc.creator.authorWelikala, N.
dc.creator.authorWeller, J.
dc.creator.authorZamorani, G.
dc.creator.authorZoubian, J.
dc.creator.authorBaldi, M.
dc.creator.authorFarinelli, R.
dc.creator.authorMedinaceli, E.
dc.creator.authorMei, S.
dc.creator.authorPolenta, G.
dc.creator.authorRomelli, E.
dc.creator.authorVassallo, T.
dc.creator.authorHumphrey, A.
cristin.unitcode185,15,3,0
cristin.unitnameInstitutt for teoretisk astrofysikk
cristin.ispublishedtrue
cristin.fulltextoriginal
cristin.qualitycode2
dc.identifier.cristin2031262
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=660&rft.spage=&rft.date=2022
dc.identifier.jtitleAstronomy and Astrophysics (A & A)
dc.identifier.volume660
dc.identifier.pagecount16
dc.identifier.doihttps://doi.org/10.1051/0004-6361/202142224
dc.identifier.urnURN:NBN:no-96967
dc.subject.nviVDP::Astrofysikk, astronomi: 438
dc.type.documentTidsskriftartikkel
dc.type.peerreviewedPeer reviewed
dc.source.issn0004-6361
dc.identifier.fulltextFulltext https://www.duo.uio.no/bitstream/handle/10852/94424/1/aa42224-21.pdf
dc.type.versionPublishedVersion
cristin.articleidA9
dc.relation.projectNFR/287772


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