Recent James Webb Space Telescope (JWST) observations have unveiled a numerous population of low-luminosity active galactic nuclei (AGNs) at 4 ≲ z ≲ 10, with space densities roughly an order of magnitude above pre-JWST estimates, and many of these AGNs have masses orders of magnitude above the local black hole mass–stellar mass (MBH − M*) scaling relations. We investigate the consistency of these observations within a data-driven framework that linksthe galaxy stellar mass function to the supermassive black hole (SMBH) mass function and AGN luminosity functions using different MBH − M* relations and the observed Eddington-ratio distribution. By comparing our predictions against observed AGN luminosity functions at z ∼ 5.5 we find that observations can be reproduced either by highly elevated MBH − M* relations paired with low duty cycles (fAGN ∼ 0.08), or moderate relations with higher duty cycles (fAGN ∼ 0.5). Through the Sołtan argument, we find that MBH − M* relations that are modestly above the local relation for AGNs produce consistency between multiple tracers of the SMBH demography at z ∼ 5.5, while more extreme normalizations would require a weakly evolving luminosity function at z ≥ 5.5. Continuity-equation modelling shows that initially high MBH − M* relations predict a strong two-phase evolutionary scenario and very steep low-mass SMBH mass functions in tension with several current estimates, while more moderate relations generate local SMBH mass functions in better agreement with present determinations and near-constant scaling relations. Our results favour a scenario where SMBHs at z ∼ 5 on average lie modestly above local AGN scaling relations, with elevated but physically plausible duty cycles. Future wide-field clustering and demographic studies will help break the remaining degeneracies between SMBH scaling relations and AGN duty cycles at early cosmic times.

Too many or too massive? Investigating the high-z demography of active SMBHs from JWST / Roberts, D., Shankar, F., Cammelli, V., Fontanot, F., Trinca, A., Bisigello, L., Bonta, E.D., Fu, H., Gilli, R., Grazian, A., Graziani, L., Lapi, A., Menci, N., Scholtz, J., Varadarajan, K.M.. - In: MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY. - ISSN 1365-2966. - 546:4(2026). [10.1093/mnras/stag223]

Too many or too massive? Investigating the high-z demography of active SMBHs from JWST

Lapi A.;
2026-01-01

Abstract

Recent James Webb Space Telescope (JWST) observations have unveiled a numerous population of low-luminosity active galactic nuclei (AGNs) at 4 ≲ z ≲ 10, with space densities roughly an order of magnitude above pre-JWST estimates, and many of these AGNs have masses orders of magnitude above the local black hole mass–stellar mass (MBH − M*) scaling relations. We investigate the consistency of these observations within a data-driven framework that linksthe galaxy stellar mass function to the supermassive black hole (SMBH) mass function and AGN luminosity functions using different MBH − M* relations and the observed Eddington-ratio distribution. By comparing our predictions against observed AGN luminosity functions at z ∼ 5.5 we find that observations can be reproduced either by highly elevated MBH − M* relations paired with low duty cycles (fAGN ∼ 0.08), or moderate relations with higher duty cycles (fAGN ∼ 0.5). Through the Sołtan argument, we find that MBH − M* relations that are modestly above the local relation for AGNs produce consistency between multiple tracers of the SMBH demography at z ∼ 5.5, while more extreme normalizations would require a weakly evolving luminosity function at z ≥ 5.5. Continuity-equation modelling shows that initially high MBH − M* relations predict a strong two-phase evolutionary scenario and very steep low-mass SMBH mass functions in tension with several current estimates, while more moderate relations generate local SMBH mass functions in better agreement with present determinations and near-constant scaling relations. Our results favour a scenario where SMBHs at z ∼ 5 on average lie modestly above local AGN scaling relations, with elevated but physically plausible duty cycles. Future wide-field clustering and demographic studies will help break the remaining degeneracies between SMBH scaling relations and AGN duty cycles at early cosmic times.
2026
546
4
stag223
10.1093/mnras/stag223
https://arxiv.org/abs/2601.23250
Roberts, D.; Shankar, F.; Cammelli, V.; Fontanot, F.; Trinca, A.; Bisigello, L.; Bonta, E. D.; Fu, H.; Gilli, R.; Grazian, A.; Graziani, L.; Lapi, A.;...espandi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.11767/153515
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