1
Return

The near-infrared spectral energy distribution of blue quasars: Determining what drives the evolution of the dusty torus

delete2025-05-22
delete0
PRE
AI
B
Bartolomeo Trefoloni *
R
R. Gilli
E
Elisabeta Lusso
A
A. Marconi
G
Giovanni Mazzolari
E
E. Nardini
G
G. Risaliti
M
Matilde Signorini
DOI:10.1051/0004-6361/202452609delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
A fundamental ingredient in the unified model of active galactic nuclei (AGN) is the obscuring torus, whose innermost, hottest region dominates the near infrared (NIR) emission. Characterising the change in the torus properties and its interplay with the primary AGN emission is key for our understanding of AGN physics, evolution, and classification. Its covering factor (CF) is largely responsible for the classification of AGN on the basis of the detection of broad emission lines. It is still not clear whether the torus properties evolve over time and how they relate with the accretion parameters of the nucleus. In this work, we aim at investigating the evolution of the NIR properties with the redshift (z) and the bolometric luminosity (L-bol) in a sample of AGN. To this end, we assembled a large dataset of similar to 36 000 type 1 AGN between 0.5 < z < 2.9 and 45.0 < log(L-bol/(erg s)) < 48.0 with UV, optical, and near-infrared photometry. We produced average spectral energy distributions (SED) in different bins of the z - L-bol parameter space to estimate how the NIR SED evolves according to these parameters. We find that the NIR luminosity decreases for increasing L-bol at any redshift. At the same time, the shape of the NIR SED in our sample is consistent with a non-evolution with z. As a consequence, all the explored proxies for the CF exhibit significant anti-correlations with L-bol, but not with z. Additionally, the CF also shows a shallower anti-correlation with the Eddington ratio (lambda(Edd)), yet the current systematic uncertainties, as well as the limited dynamical range, do not allow us to precisely constrain the role of the Eddington ratio. Lastly, we derived the covering factor from the ratio between the NIR and optical luminosity and we employed it to set a lower limit for the X-ray obscuration at different redshifts.
Keywords:
galaxies: active
galaxies: nuclei
quasars: general
quasars: supermassive black holes

Journal

Astronomy and Astrophysics cover
Astronomy and Astrophysics
IF:
5.8
Papers:
5.0W
Citations:
18.3W

Organization

U
univ roma
Scholars:
3
Papers: 3
Citations: 0
I
inaf osservatorio astrofisico arcetri
Scholars:
17
Papers: 13
Citations: 4
U
Univ Bologna
Scholars:
1.7K
Papers: 882
Citations: 300
U
Univ Firenze
Scholars:
298
Papers: 134
Citations: 36
I
INAF
Scholars:
546
Papers: 187
Citations: 119
Cited Papers

Cited Papers

Citing Papers

Citing Papers