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<i>Euclid</i> preparation

G. F. LesciM. SerenoM. RadovichG. CastignaniL. BisigelloF. MarulliL. MoscardiniLucie BaumontAstrophysique, Instrumentation et ModélisationG. CovoneS. FarrensAIM (UMR7158 / UMR_E_9005 / UM_112) - Astrophysique Interprétation Modélisation (AIM - UMR 7158 - UMR E 9005, ex 'Astrophysique Interactions Multi-échelles', Service d'astrophysique, CEA/Saclay, Orme des Merisiers F-91191 GIF SUR YVETTE CEDEX - France)C. GiocoliL. IngogliaS. Miranda La HeraAIM (UMR7158 / UMR_E_9005 / UM_112) - Astrophysique Interprétation Modélisation (AIM - UMR 7158 - UMR E 9005, ex 'Astrophysique Interactions Multi-échelles', Service d'astrophysique, CEA/Saclay, Orme des Merisiers F-91191 GIF SUR YVETTE CEDEX - France)Michael W. VannierLAGRANGE - Joseph Louis LAGRANGE (Boulevard de l'Observatoire B.P. 4229 06304 Nice Cedex 04 - France - France)A. BivianoS. MaurogordatoLAGRANGE - Joseph Louis LAGRANGE (Boulevard de l'Observatoire B.P. 4229 06304 Nice Cedex 04 - France - France)N. AghanimIAS - Institut d'astrophysique spatiale (Bâtiment 121 91405 ORSAY CEDEX - France)A. AmaraS. AndreonN. AuricchioMarco BaldiS. BardelliR. BenderC. BodendorfD. BoninoE. BranchiniM. BresciaJ. BrinchmannS. CameraV. CapobiancoC. CarboneJ. CarreteroSantiago CasasF. J. CastanderM. CastellanoS. CavuotiA. CimattiG. CongedoChristopher J. ConseliceL. ConversiY. CopinIP2I Lyon - Institut de Physique des 2 Infinis de Lyon (Campus LyonTech-la Doua Bâtiment Paul DIRAC 4 Rue Enrico Fermi 69622 Villeurbanne Cedex - France)L. CorcioneF. CourbinH. M. CourtoisIP2I Lyon - Institut de Physique des 2 Infinis de Lyon (Campus LyonTech-la Doua Bâtiment Paul DIRAC 4 Rue Enrico Fermi 69622 Villeurbanne Cedex - France)A. Da SilvaH. DegaudenziA. M. Di GiorgioJ. DinisF. DubathC. A. J. DuncanX DupacS. DusiniM. FarinaS. FerriolIP2I Lyon - Institut de Physique des 2 Infinis de Lyon (Campus LyonTech-la Doua Bâtiment Paul DIRAC 4 Rue Enrico Fermi 69622 Villeurbanne Cedex - France)P. FosalbaS. FotopoulouM. FrailisE. FranceschiP. FranzettiM. FumanaS. GaleottaB. GarilliB. GillisA. GrazianF GruppS. V. H. HauganI. HookF. HormuthA. HornstrupP. HudelotIAP - Institut d'Astrophysique de Paris (98bis, bd Arago - 75014 Paris France - France)K. JahnkęM KümmelS. KermicheCPPM - Centre de Physique des Particules de Marseille (163, avenue de Luminy - Case 902 - 13288 Marseille cedex 09 - France)A. KiesslingM. KilbingerAIM (UMR7158 / UMR_E_9005 / UM_112) - Astrophysique Interprétation Modélisation (AIM - UMR 7158 - UMR E 9005, ex 'Astrophysique Interactions Multi-échelles', Service d'astrophysique, CEA/Saclay, Orme des Merisiers F-91191 GIF SUR YVETTE CEDEX - France)B. KubikIP2I Lyon - Institut de Physique des 2 Infinis de Lyon (Campus LyonTech-la Doua Bâtiment Paul DIRAC 4 Rue Enrico Fermi 69622 Villeurbanne Cedex - France)M. KunzH. Kurki‐SuonioS. LigoriP. B. LiljeV. LindholmI. LloroE. MaioranoO. MansuttiO. MarggrafK. MarkovičN. MartinetLAM - Laboratoire d'Astrophysique de Marseille (Pôle de l'Étoile Site de Château-Gombert 38, rue Frédéric Joliot-Curie 13388 Marseille cedex 13 - France)R. MasseyE. MedinaceliM MelchiorY. MellierIAP - Institut d'Astrophysique de Paris (98bis, bd Arago - 75014 Paris France - France)M. MeneghettiE. MerlinG. MeylanM. MorescoE. MunariR. NakajimaS.-M NiemiC. PadillaS. Paltani
2024en
ABI

Annotatsiya

Aims. We derived galaxy colour selections from Euclid and ground-based photometry, aiming to accurately define background galaxy samples in cluster weak-lensing analyses. These selections have been implemented in the Euclid data analysis pipelines for galaxy clusters. Methods. Given any set of photometric bands, we developed a method for the calibration of optimal galaxy colour selections that maximises the selection completeness, given a threshold on purity. Such colour selections are expressed as a function of the lens redshift. Results. We calibrated galaxy selections using simulated ground-based griz and EuclidY E J E H E photometry. Both selections produce a purity higher than 97%. The griz selection completeness ranges from 30% to 84% in the lens redshift range z l ∈ [0.2, 0.8]. With the full grizY E J E H E selection, the completeness improves by up to 25 percentage points, and the z l range extends up to z l = 1.5. The calibrated colour selections are stable to changes in the sample limiting magnitudes and redshift, and the selection based on griz bands provides excellent results on real external datasets. Furthermore, the calibrated selections provide stable results using alternative photometric aperture definitions obtained from different ground-based telescopes. The griz selection is also purer at high redshift and more complete at low redshift compared to colour selections found in the literature. We find excellent agreement in terms of purity and completeness between the analysis of an independent, simulated Euclid galaxy catalogue and our calibration sample, except for galaxies at high redshifts, for which we obtain up to 50 percentage points higher completeness. The combination of colour and photo- z selections applied to simulated Euclid data yields up to 95% completeness, while the purity decreases down to 92% at high z l . We show that the calibrated colour selections provide robust results even when observations from a single band are missing from the ground-based data. Finally, we show that colour selections do not disrupt the shear calibration for stage III surveys. The first Euclid data releases will provide further insights into the impact of background selections on the shear calibration.

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