Exploring black hole scaling relations via the ensemble variability of active galactic nuclei

Author:

Georgakakis A1ORCID,Papadakis I23,Paolillo M456ORCID

Affiliation:

1. Institute for Astronomy & Astrophysics, National Observatory of Athens, V. Paulou & I. Metaxa 11532, Greece

2. Department of Physics and Institute of Theoretical and Computational Physics, University of Crete, 71003 Heraklion, Greece

3. Institute of Astrophysics, Foundation for Research and Technology, 71110 Heraklion, Greece

4. Dipartimento di Fisica ‘Ettore Pancini’, Università Federico II, via Cinthia, I-80126 Napoli, Italy

5. INAF - Osservatorio Astronomico di Capodimonte, via Moiariello 16, I-80131 Napoli, Italy

6. Istituto Nazionale di Fisica Nucleare, Sezione di Napoli, I-80126 Napoli, Italy

Abstract

ABSTRACT An empirical model is presented that links, for the first time, the demographics of active galactic nuclei (AGN) to their ensemble X-ray variability properties. Observations on the incidence of AGN in galaxies are combined with (i) models of the power spectrum density (PSD) of the flux variations of AGN and (ii) parametrizations of the black hole mass versus stellar mass scaling relation to predict the mean excess variance of active black hole populations in cosmological volumes. We show that the comparison of the model with observational measurements of the ensemble excess variance as a function of X-ray luminosity provides a handle on both the PSD models and the black hole mass versus stellar mass relation. We find strong evidence against a PSD model that is described by a broken power law and a constant overall normalization. Instead, our analysis indicates that the amplitude of the PSD depends on the physical properties of the accretion events, such as the Eddington ratio and/or the black hole mass. We also find that current observational measurements of the ensemble excess variance are consistent with the black hole mass versus stellar mass relation of local spheroids based on dynamically determined black hole masses. We also discuss future prospects of the proposed approach to jointly constrain the PSD of AGN and the black hole mass versus stellar mass relation as a function of redshift.

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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