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Euclid Quick Data Release (Q1)

Antonio La MarcaSpace Research Organisation NetherlandsL. WangSpace Research Organisation NetherlandsB. Margalef-BentabolSRON Netherlands Institute for Space ResearchL. GabarraDepartment of Physics, Oxford UniversityYoshiki TobaNational Astronomical Observatory of JapanM. MezcuaInstitute of Space Sciences (ICE, CSIC)Vicente Rodríguez-GómezInstituto de Radioastronomía y Astrofísica, Universidad Nacional Autónoma de MéxicoF. RicciDepartment of Mathematics and Physics, Roma Tre UniversityS. FotopoulouBristol Robotics LaboratoryT. Matamoro ZatarainSchool of Physics, HH Wills Physics Laboratory, University of BristolV. AllevatoINAF-Osservatorio Astronomico di CapodimonteF. La FrancaDepartment of Mathematics and Physics, Roma Tre UniversityF. ShankarSchool of Physics & Astronomy, University of SouthamptonL BisigelloINAF-Osservatorio Astronomico di PadovaGrant M. StevensSchool of Physics, HH Wills Physics Laboratory, University of BristolM. SiudekInstitute of Space Sciences (ICE, CSIC)W. RosterMax Planck Institute for Extraterrestrial PhysicsM. SalvatoMax Planck Institute for Extraterrestrial PhysicsC. TortoraINAF-Osservatorio Astronomico di CapodimonteL. SpinoglioINAF-Istituto di Astrofisica e Planetologia SpazialiAllison W. S. ManDepartment of Physics and Astronomy, University of British ColumbiaJ. H. KnapenUniversidad de La Laguna, Departamento de AstrofísicaM. BaesSterrenkundig Observatorium, Universiteit GentDavid O’RyanESAC/ESAN. AghanimUniversité Paris-Saclay, CNRS, Institut d’astrophysique spatialeB AltieriESAC/ESAA AmaraSchool of Mathematics and Physics, University of SurreyS. AndreonINAF-Osservatorio Astronomico di BreraN. AuricchioINAF-Osservatorio di Astrofisica e Scienza dello Spazio di BolognaH. AusselCEA Paris-SaclayC. BaccigalupiSISSA, International School for Advanced StudiesM. BaldiINFN-Sezione di BolognaS BardelliINAF-Osservatorio di Astrofisica e Scienza dello Spazio di BolognaPietro BattagliaINAF-Osservatorio di Astrofisica e Scienza dello Spazio di BolognaA. BivianoIFPU, Institute for Fundamental Physics of the UniverseA. BonchiUnited Kingdom Space AgencyE. BranchiniDipartimento di Fisica, Università di GenovaM. BresciaINAF-Osservatorio Astronomico di CapodimonteJ BrinchmannFaculdade de Ciências da Universidade do PortoS. CameraINFN-Sezione di TorinoG Cañas-HerreraLeiden Observatory, Leiden UniversityV. CapobiancoINAF-Osservatorio Astrofisico di TorinoC. CarboneINAF-IASF MilanoJ. CarreteroCentro de Investigaciones Energéticas, Medioambientales y Tecnológicas (CIEMAT)M. CastellanoNational Institute for AstrophysicsG CastignaniINAF-Osservatorio di Astrofisica e Scienza dello Spazio di BolognaS CavuotiINAF-Osservatorio Astronomico di CapodimonteK. C. ChambersInstitute for Astronomy, University of HawaiiA. CimattiDipartimento di Fisica e Astronomia “Augusto Righi” – Alma Mater Studiorum Università di BolognaC. Colodro-CondeInstituto de Astrofísica de CanariasG. CongedoInstitute for Astronomy, University of Edinburgh, Royal ObservatoryC.J. ConseliceJodrell Bank Centre for Astrophysics, Department of Physics and Astronomy, University of ManchesterL. ConversiEuropean Space Research InstituteY. CopinUniversité Claude Bernard Lyon 1, CNRS/IN2P3, IP2I Lyon, UMR 5822A. CostilleAix-Marseille Université, CNRS, CNES, LAMF CourbinInstitut de Ciències del Cosmos (ICCUB), Universitat de Barcelona (IEEC-UB)H. M. CourtoisLyon CollegeM. CropperMullard Space Science Laboratory, University College LondonA da SilvaInstituto de Astrofísica e Ciências do Espaço, Faculdade de Ciências, Universidade de LisboaH. DegaudenziDepartment of Astronomy, University of GenevaG. De LuciaINAF-Osservatorio Astronomico di TriesteA. M. Di GiorgioINAF-Istituto di Astrofisica e Planetologia SpazialiC. DoldingMullard Space Science Laboratory, University College LondonH. DoleUniversité Paris-Saclay, CNRS, Institut d’astrophysique spatialeF. DubathDepartment of Astronomy, University of GenevaC.A.J DuncanJodrell Bank Centre for Astrophysics, Department of Physics and Astronomy, University of ManchesterX DupacESAC/ESAA. EaletUniversité Claude Bernard Lyon 1, CNRS/IN2P3, IP2I Lyon, UMR 5822S. EscoffierAix-Marseille Université, CNRS/IN2P3, CPPMMaximilian FabriciusMax Planck Institute for Extraterrestrial PhysicsM. FarinaINAF-Istituto di Astrofisica e Planetologia SpazialiR FarinelliINAF-Osservatorio di Astrofisica e Scienza dello Spazio di BolognaF. FaustiniSpace Science Data Center, Italian Space AgencyS. FerriolCentre National de la Recherche ScientifiqueF FinelliINAF-Osservatorio di Astrofisica e Scienza dello Spazio di BolognaM. FrailisINAF-Osservatorio Astronomico di TriesteE. FranceschiINAF-Osservatorio di Astrofisica e Scienza dello Spazio di BolognaS. GaleottaINAF-Osservatorio Astronomico di TriesteKoshy GeorgeUniversitäts-Sternwarte München, Fakultät für Physik, Ludwig-Maximilians-Universität MünchenB. GillisInstitute for Astronomy, University of Edinburgh, Royal ObservatoryC. GiocoliINFN-Sezione di BolognaP. Gómez-AlvarezESAC/ESAJ. Gracia-CarpioMax Planck Institute for Extraterrestrial PhysicsB. R. GranettINAF-Osservatorio Astronomico di BreraA. GrazianINAF-Osservatorio Astronomico di PadovaF. GruppMax Planck Institute for Extraterrestrial PhysicsL. GuzzoINAF-Osservatorio Astronomico di BreraStephen GwynNRC HerzbergS. V. H. HauganInstitute of Theoretical Astrophysics, University of OsloW. A. HolmesJet Propulsion Laboratory, California Institute of TechnologyI. HookDepartment of Physics, Lancaster UniversityF. HormuthFelix Hormuth EngineeringA. HornstrupTechnical University of DenmarkP. HudelotInstitut d’Astrophysique de Paris, UMR 7095, CNRS, and Sorbonne UniversitéK 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 Technology
2025en
ABI

Аннотация

Galaxy major mergers are indicated as one of the principal pathways to trigger active galactic nuclei (AGN). We present the first statistical analysis of the major merger and AGN connection in the Euclid Deep Fields, and showcase the statistical power of the Euclid data. We constructed a stellar-mass-complete ( M ★ > 10 9.8 M ⊙ ) sample of galaxies from the quick data release (Euclid Quick Release Q1 2025) in the redshift range z = 0.5–2. We selected AGN using X-ray detections, optical spectroscopy, and mid-infrared (MIR) colours, and by processing I E observations with an image decomposition algorithm. We used convolutional neural networks trained on cosmological hydrodynamic simulations to classify galaxies as mergers and non-mergers. We found a larger fraction of AGN in mergers compared to the non-merger controls for all AGN selections, with AGN excess factors ranging from two to six. The largest excess we observed was in the MIR AGN. Likewise, a generally larger merger fraction ( f merg ) was seen in active galaxies than in the non-active controls, with the excess depending on the AGN selection method. Furthermore, we analysed f merg as a function of the AGN bolometric luminosity ( L bol ) and the contribution of the point-source component to the total galaxy light in the I E -band ( f PSF ) as a proxy for the relative AGN contribution fraction. We uncovered a rising f merg , with an increasing f PSF up to f PSF ≃ 0.55, after which we observed a decreasing trend. In the range f PSF = 0.3–0.7, mergers appear to be the dominant AGN fuelling mechanism. We then derived the point-source luminosity ( L PSF ) and showed that f merg monotonically increases as a function of L PSF at z < 0.9, with f merg ≥ 50% for L PSF ≃ 2 × 10 43 erg s −1 . Similarly, at 0.9 ≤ z ≤ 2, f merg rises as a function of L PSF , though mergers do not dominate until L PSF ≃ 10 45 erg s −1 . For the X-ray and spectroscopically detected AGN, we derived the bolometric luminosity, L bol , which has a positive correlation with f merg for X-ray AGN, while there is a less pronounced trend for spectroscopically selected AGN due to the smaller sample size. At L bol > 10 45 erg s −1 , AGN mostly reside in mergers. We conclude that mergers are most strongly associated with the most powerful and dust-obscured AGN, which are typically linked to a fast-growing phase of the supermassive black hole, while other mechanisms, such as secular processes, might be the trigger of less luminous and dominant AGN.

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