A super-linear 'radio-AGN main sequence' links mean radio-AGN power and galaxy stellar mass since z similar to 3

dc.contributor.authorDelvecchio, I.
dc.contributor.authorDaddi, E.
dc.contributor.authorSargent, M.T.
dc.contributor.authorAird, J.
dc.contributor.authorMullaney, J.R.
dc.contributor.authorMagnelli, B.
dc.contributor.authorElbaz, D.
dc.contributor.authorBisigello, L.
dc.contributor.authorCeraj, L.
dc.contributor.authorJin, S.
dc.contributor.authorKalita, B.S.
dc.contributor.authorLiu, D.
dc.contributor.authorNovak, M.
dc.contributor.authorPrandoni, I.
dc.contributor.authorRadcliffe, Jack Frederick
dc.contributor.authorSpingola, C.
dc.contributor.authorZamorani, G.
dc.contributor.authorAllevato, V.
dc.contributor.authorRodighiero, G.
dc.contributor.authorSmolcic, V.
dc.date.accessioned2023-04-28T09:47:57Z
dc.date.available2023-04-28T09:47:57Z
dc.date.issued2022-12
dc.description.abstractMapping the average active galactic nucleus (AGN) luminosity across galaxy populations and over time reveals important clues regarding the interplay between supermassive black hole and galaxy growth. This paper presents the demography, mean power, and cosmic evolution of radio AGN across star-forming galaxies (SFGs) of different stellar masses (M).We exploit deep VLA-COSMOS 3 GHz data to build the rest-frame 1.4 GHz AGN luminosity functions at 0:1 z 4:5 hosted in SFGs. Splitting the AGN luminosity function into different M bins reveals that, at all redshifts, radio AGN are both more frequent and more luminous in higher M than in lower M galaxies. The cumulative kinetic luminosity density exerted by radio AGN in SFGs peaks at z 2, and it is mostly driven by galaxies with 10:5 log(M=M ) < 11. Averaging the cumulative radio AGN activity across all SFGs at each (M,z) results in a ‘radio-AGN main sequence’ that links the time-averaged radio-AGN power hLAGN 1:4 i and galaxy stellar mass, in the form: log h[LAGN 1:4 /WHz1]i = (20.97 0.16) + (2.51 0.34) log(1+z) + (1.41 0.09) (log[M /M ] – 10). The super-linear dependence on M , at fixed redshift, suggests enhanced radio-AGN activity in more massive SFGs as compared to star formation. We ascribe this enhancement to both a higher radio AGN duty cycle and a brighter radio-AGN phase in more massive SFGs. A remarkably consistent M dependence is seen for the evolving X-ray AGN population in SFGs. This similarity is interpreted as possibly driven by secular cold gas accretion fuelling both radio and X-ray AGN activity in a similar fashion over the galaxy’s lifetime.en_US
dc.description.departmentPhysicsen_US
dc.description.librarianam2023en_US
dc.description.sponsorshipThe Cosmic Dawn Center (DAWN) is funded by the Danish National Research Foundation, the Villum Fonden, European Union’s Horizon research and innovation program under the Marie Skłodowska-Curie grant and the Italian Ministry of University and Research.en_US
dc.description.urihttp://www.hanspub.org/Journal/AAS.htmlen_US
dc.identifier.citationDelvecchio, I., Daddi, E., Sargent, M.T. et al. 2022, 'A super-linear 'radio-AGN main sequence' links mean radio-AGN power and galaxy stellar mass since z similar to 3', Astronomy and Astrophysics, vol. 668, art. A81, pp. 1-27, doi : 10.1051/0004-6361/202244639.en_US
dc.identifier.issn2329-1273 (print)
dc.identifier.issn2329-1265 (online)
dc.identifier.other10.1051/0004-6361/202244639
dc.identifier.urihttp://hdl.handle.net/2263/90529
dc.language.isoenen_US
dc.publisherHans Publishersen_US
dc.rights© I. Delvecchio et al. 2022. This article is published in open access under the terms of the Creative Commons Attribution License.en_US
dc.subjectGalaxies : nucleien_US
dc.subjectRadio continuum : galaxiesen_US
dc.subjectGalaxies : luminosity functionen_US
dc.subjectMass functionen_US
dc.subjectGalaxies : activeen_US
dc.subjectGalaxies : evolutionen_US
dc.subjectActive galactic nucleus (AGN)en_US
dc.subjectStar-forming galaxies (SFGs)en_US
dc.titleA super-linear 'radio-AGN main sequence' links mean radio-AGN power and galaxy stellar mass since z similar to 3en_US
dc.typeArticleen_US

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