Optical Variability Structure Function of Low-Luminosity AGN using ATLAS Lightcurves

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ID: 315995
2026
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Abstract
Abstract The origin of the optical flux variability in active galactic nuclei (AGN) is largely unknown. Previous studies have correlated features of the variability structure function (SF) with AGN properties, though they mostly involved high-luminosity AGN to avoid biases from host galaxy flux. In this work, we characterise optical variability in a sample of 246 low-luminosity AGN at z < 0.1 from the Six-degree Field Galaxy Survey (6dFGS) through the ensemble variability SF. We use lightcurves from the Asteroid Terrestrial-impact Last Alert System (ATLAS) with a cadence of ~2 days over eight years, and perform host-AGN decomposition on recent spectra to obtain the host fraction. We find that the slope of the SF depends on black hole mass, increasing from ~0.1 at log MBH/M⊙ ~ 6.5 to ~0.3 at log MBH/M⊙ ~ 8. Contrary to some earlier work, we do not find breaks in the SF, and two-epoch spectra taken ~20 years apart suggest that the SF keeps rising into decadal timescales. In addition, we measure an anticorrelation of the amplitude with the luminosity and a positive correlation with the black hole mass. The variability behaviour also suggests that extinction is not the main driver of the variety in Seyfert subtypes.
Reference Key
openalex_W7163694738 Use this key to autocite in the manuscript while using SciMatic Manuscript Manager or Thesis Manager
Authors A. Tan, Christian Wolf, Neelesh Amrutha, Christopher A. Onken, J. Tonry, Rachel Webster
Journal monthly notices of the royal astronomical society
Year 2026
DOI
10.1093/mnras/stag1052
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