Probing dust torus radius--luminosity relation: An WISE view
Abstract
We present measurements of the dusty torus sizes of 51 active galactic nuclei (AGNs) with a redshift of 0.8. Our analysis utilizes about 16 years of optical photometric data of 146 AGNs from various time-domain surveys, including ASAS-SN, CRTS, and ZTF, along with 14 years of infrared data in the 1 ( 3.4 m) and 2 ( 4.6 m) bands obtained from the Wide-Field Infrared Survey Explorer (WISE). The estimated dust torus size ranges from 1000 to 3000 days, using both the cross-correlation analysis and lightcurve modeling through `MICA'. The measured lag has been corrected by , to account for cosmological time dilation and the torus temperature-gradient scaling. We conduct a linear regression analysis for both the 1 and 2 bands to examine the radius--luminosity (--) relationship under two conditions: one where the slope is fixed at 0.5 and one where it is allowed to vary. For the fixed slope of 0.5, we find the ratio of R: R: R to be 1: 9: 12, indicating that the torus lies outside the BLR and that its size increases with wavelength. Furthermore, we determine the relationship between torus size and L, yielding best-fit slopes of for the 1 band and for the 2 band. Both slopes are shallower than predicted by the dust radiation equilibrium model. Furthermore, our findings indicate that the torus size systematically decreases as the Eddington ratio increases, a trend that can be explained by the self-shadowing effects of slim disks.
Cite
@article{arxiv.2510.04517,
title = {Probing dust torus radius--luminosity relation: An WISE view},
author = {Ashutosh Tomar and Suvendu Rakshit and Amit Kumar Mandal and Shivangi Pandey},
journal= {arXiv preprint arXiv:2510.04517},
year = {2025}
}
Comments
16 pages, 11 figures, Accepted for publication in ApJ