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Characterizing the roles of transitory obscured phases and inner torus in shaping the fractions of obscured Active Galactic Nuclei at cosmic noon

  • Alba V. Alonso-Tetilla
  • , Francesco Shankar
  • , Fabio Fontanot
  • , Andrea Lapi
  • , Milena Valentini
  • , Annagrazia Puglisi
  • , Nicola Menci
  • , Hao Fu
  • , Lumen Boco
  • , Johannes Buchner
  • , Michaela Hirschmann
  • , Cristina Ramos Almeida
  • , Carolin Villforth
  • , Lizhi Xie
  • University of Southampton
  • INAF - Osservatorio Astronomico di Trieste
  • IFPU – Institute for Fundamental Physics of the Universe
  • Scuola Internazionale Superiore di Studi Avanzati
  • Università degli Studi di Trieste
  • Big Data and Quantum Computing
  • Istituto Nazionale di Fisica Nucleare - Sezione di Trieste
  • INAF-Osservatorio Astronomico di Roma
  • Fudan University
  • Max Planck Institut für Extraterrestrische Physik
  • Institute for Physics
  • Instituto de Astrofísica de Canarias (IAC)
  • Universidad de La Laguna
  • Tianjin Normal University

Research output: Contribution to journalArticlepeer-review

Abstract

The origin of obscuration in active galactic nuclei (AGN) is still a matter of contention. It is unclear whether obscured AGN are primarily due to line-of-sight effects (Orientation model), a transitory, dust-enshrouded phase in galaxy evolution (Evolution models), or a combination of both. The role of an inner torus around the central supermassive black hole also remains unclear in pure Evolution models. We use cosmological semi-analytic models and semi-empirical prescriptions to explore obscuration effects in AGN at cosmic noon, in the range (Formula presented). We consider a realistic object-by-object modelling of AGN evolution including different AGN light curves (LCs) composed of phases of varying levels of obscuration, usually (but not uniquely) with a larger degree of obscuration before the peak of AGN activity, mimicking the possible clearing effects of strong AGN feedback. Evolution models characterized by AGN LCs with relatively short pre-peak obscured phases followed by more extended optical/ultraviolet (UV) visible post-peak phases, struggle to reproduce the high fraction of obscured AGN at (Formula presented) 2–3 inferred from X-ray surveys. Evolution models characterized by AGN LCs with sharp post-peak declines or persistent or multiple obscuration phases are more successful, although they still face challenges in reproducing the steady drop in the fractions of obscured AGN with increasing luminosity measured by some groups. Invoking a fine-tuning in the input LCs, with more luminous AGN defined by longer optical/UV visible windows, can improve the match to the decreasing fractions of obscured AGN with luminosity. Alternatively, a long-lived central torus-like component, with thickness decreasing with increasing AGN power, naturally boosts the luminosity-dependent fractions of obscured AGN, suggesting that small-scale orientation effects may still represent a key component even in Evolution models. We also find that in our models major mergers and starbursts, when considered in isolation, fall short in accounting for the large fractions of highly obscured faint AGN detected at cosmic noon.

Original languageEnglish
Article numberstaf1485
JournalMonthly Notices of the Royal Astronomical Society
Volume547
Issue number4
Early online date5 Sept 2025
DOIs
Publication statusPublished - 30 Apr 2026

Data Availability Statement

An introduction to gaea, a list of our recent work, as well as datafiles containing published model predictions, can be found at https://sites.google.com/inaf.it/gaea/home. The analysis carried out in this work as well as the plotted results will be available upon request until a free access data base is released (which will be found in https://github.com/AVAlonso).

Keywords

  • black hole physics
  • Galaxies: active
  • galaxies: evolution
  • galaxies: formation
  • galaxies: fundamental parameters
  • galaxies: nuclei
  • quasars: supermassive black holes

ASJC Scopus subject areas

  • Astronomy and Astrophysics
  • Space and Planetary Science

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