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<i>Euclid</i> preparation

P. MonacoIFPU, Institute for Fundamental Physics of the UniverseM. Y. ElkhashabINAF-Osservatorio Astronomico di TriesteB. R. GranettINAF-Osservatorio Astronomico di BreraJ. SalvalaggioIFPU, Institute for Fundamental Physics of the UniverseE. SefusattiINAF-Osservatorio Astronomico di TriesteC. ScarlataMinnesota Institute for Astrophysics, University of MinnesotaB. ZabelleMinnesota Institute for Astrophysics, University of MinnesotaM. BétherminUniversité de Strasbourg, CNRS, Observatoire astronomique de Strasbourg, UMR 7550S. BrutonCalifornia Institute of TechnologyC. CarboneINAF-IASF MilanoS. de la TorreAix-Marseille Université, CNRS, CNES, LAMS. DusiniINFN-PadovaA. EggemeierUniversität Bonn, Argelander-Institut für AstronomieL. GuzzoINAF-Osservatorio Astronomico di BreraG. LavauxInstitut d'Astrophysique de ParisS. W. LeeJet Propulsion Laboratory, California Institute of TechnologyK. MarkovičJet Propulsion Laboratory, California Institute of TechnologyK. S. McCarthyThe University of TokyoM. MorescoINAF-Osservatorio di Astrofisica e Scienza dello Spazio di BolognaF. PassalacquaDipartimento di Fisica e Astronomia “G. Galilei”, Università di PadovaWill J. PercivalDepartment of Physics and Astronomy, University of WaterlooI. RissoINFN-Sezione di GenovaAriel G. SánchezMax Planck Institute for Extraterrestrial PhysicsD. ScottDepartment of Physics and Astronomy, University of British ColumbiaC. SirignanoDipartimento di Fisica e Astronomia “G. Galilei”, Università di PadovaY. H. WangInfrared Processing and Analysis Center, California Institute of TechnologyB. AltieriESAC/ESAS. AndreonINAF-Osservatorio Astronomico di BreraN. AuricchioINAF-Osservatorio di Astrofisica e Scienza dello Spazio di BolognaC. BaccigalupiINFN, Sezione di TriesteMarco BaldiINAF-Osservatorio di Astrofisica e Scienza dello Spazio di BolognaS. BardelliINAF-Osservatorio di Astrofisica e Scienza dello Spazio di BolognaA. BivianoIFPU, Institute for Fundamental Physics of the UniverseE. BranchiniINAF-Osservatorio Astronomico di BreraM. BresciaDepartment of Physics “E. Pancini”, University Federico IIJ. BrinchmannFaculdade de Ciências da Universidade do PortoS. CameraINFN-Sezione di TorinoG. Cañas-HerreraLeiden Observatory, Leiden UniversityV. CapobiancoINAF-Osservatorio Astrofisico di TorinoV. F. CardoneNational Institute for AstrophysicsJ. CarreteroCentro de Investigaciones Energéticas, Medioambientales y Tecnológicas (CIEMAT)S. CasasInstitute for Theoretical Particle Physics and Cosmology (TTK), RWTH Aachen UniversityF. J. CastanderInstitute of Space Sciences (ICE, CSIC), Campus UABM. CastellanoINAF-Osservatorio Astronomico di RomaG. CastignaniINAF-Osservatorio di Astrofisica e Scienza dello Spazio di BolognaS. CavuotiINFN section of NaplesA. CimattiDipartimento di Fisica e Astronomia “Augusto Righi” – Alma Mater Studiorum Università di BolognaC. Colodro-CondeInstituto de Astrofísica de CanariasG. CongedoUniversity of EdinburghChristopher J. ConseliceJodrell Bank Centre for Astrophysics, Department of Physics and Astronomy, University of ManchesterL. ConversiESAC/ESAY. CopinUniversité Claude Bernard Lyon 1, CNRS/IN2P3, IP2I Lyon, UMR 5822F. CourbinInstitut de Ciencies de l’Espai (IEEC-CSIC), Campus UABH. M. CourtoisLyon CollegeH. DegaudenziDepartment of Astronomy, University of GenevaG. De LuciaINAF-Osservatorio Astronomico di TriesteH. DoleUniversité Paris-Saclay, CNRS, Institut d’astrophysique spatialeF. DubathDepartment of Astronomy, University of GenevaC. A. J. DuncanInstitute for Astronomy, University of Edinburgh, Royal ObservatoryX. DupacESAC/ESAS. EscoffierCentre de physique des particules de MarseilleM. FarinaINAF-Istituto di Astrofisica e Planetologia SpazialiR. FarinelliINAF-Osservatorio di Astrofisica e Scienza dello Spazio di BolognaS. FerriolCentre National de la Recherche ScientifiqueN. FourmanoitCentre de physique des particules de MarseilleM. FrailisINAF-Osservatorio Astronomico di TriesteE. FranceschiINAF-Osservatorio di Astrofisica e Scienza dello Spazio di BolognaM. FumanaINAF-IASF MilanoS. GaleottaINAF-Osservatorio Astronomico di TriesteK. GeorgeUniversity Observatory, LMU Faculty of PhysicsW. GillardAix-Marseille Université, CNRS/IN2P3, CPPMB. GillisUniversity of EdinburghC. GiocoliINAF-Osservatorio di Astrofisica e Scienza dello Spazio di BolognaJ. Gracia-CarpioMax Planck Institute for Extraterrestrial PhysicsA. GrazianINAF-Osservatorio Astronomico di PadovaF. GruppMax Planck Institute for Extraterrestrial PhysicsS. V. H. HauganInstitute of Theoretical Astrophysics, University of OsloW. HolmesJet Propulsion Laboratory, California Institute of TechnologyF. HormuthFelix Hormuth EngineeringA. HornstrupCosmic Dawn Center (DAWN)K. JahnkeMax-Planck-Institut für AstronomieM. JhabvalaNASA Goddard Space Flight CenterB. JoachimiDepartment of Physics and Astronomy, University College LondonE. KeihänenS. KermicheAix-Marseille Université, CNRS/IN2P3, CPPMA. KiesslingJet Propulsion Laboratory, California Institute of TechnologyB. KubikUniversité Claude Bernard Lyon 1, CNRS/IN2P3, IP2I Lyon, UMR 5822M KümmelUniversitäts-Sternwarte München, Fakultät für Physik, Ludwig-Maximilians-Universität MünchenM. KunzLaboratoire de Physique ThéoriqueH. Kurki‐SuonioDepartment of PhysicsA. M. C. Le BrunSorbonne UniversitéS. LigoriINAF-Osservatorio Astrofisico di TorinoP. B. LiljeInstitute of Theoretical Astrophysics, University of OsloV. LindholmDepartment of PhysicsI. LloroSKAOG. MainettiCentre de Calcul de l’IN2P3/CNRSD. MainoINAF-IASF MilanoE. MaioranoINAF-Osservatorio di Astrofisica e Scienza dello Spazio di BolognaO. MansuttiINAF-Osservatorio Astronomico di TriesteS. MarcinUniversity of Applied Sciences and Arts of Northwestern Switzerland, School of Computer Science
2026
ABI

Annotatsiya

We present the strategy used to identify and mitigate potential sources of angular systematics in the Euclid spectroscopic galaxy survey, and we quantify their impact on galaxy clustering measurements and cosmological parameter estimation. We first surveyed the Euclid processing pipeline to identify all evident, potential sources of systematics, and classified them into two broad classes: angular systematics, which modulate the galaxy number density across the sky, and catastrophic redshift errors, which lead to interlopers in the galaxy sample. We then used simulated spectroscopic surveys to test our ability to mitigate angular systematics by constructing a random catalogue that represents the ‘visibility mask’ of the survey; this is a dense set of intrinsically unclustered objects, subject to the same selection effects as the data catalogue. The construction of this random catalogue relies on a detection model, which gives the probability of reliably measuring the galaxy redshift as a function of the signal-to-noise ratio (S/N) of its emission lines. We demonstrate that, in the ideal case of a perfect knowledge of the visibility mask, the galaxy power spectrum in the presence of systematics is recovered, to within sub-per cent accuracy, by convolving a theory power spectrum with a window function obtained from the random catalogue itself. In the case of only approximate knowledge of the visibility mask, we test the stability of power spectrum measurements and cosmological parameter posteriors by using perturbed versions of the random catalogue. We find that significant effects are limited to very large scales, and parameter estimation remains robust; the most impacting effects are connected to the calibration of the detection model.

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