The Relationship Between Eddington Ratio and Column Density in U/LIRG AGN
arXiv:2506.02124 · doi:10.3847/2515-5172/adddc0
Abstract
The local X-ray AGN population appears to follow a growth cycle regulated by the AGN's own radiation, marked by changes in their obscuration and Eddington ratio during accretion events. Because AGN in infrared-selected galaxies are more likely to be Compton-thick and have evidence for over-massive black holes, we explore whether infrared-selected AGN follow the radiation-regulated AGN growth scheme. We calculate the Eddington ratios of nine U/LIRG AGN with dynamical BH mass measurements, finding that though the number of objects is limited, AGN in IR-selected galaxies appear consistent with radiation pressure-regulated growth. We suggest that enlarging the sample of dynamical BH mass measurements in IR-selected systems will provide more stringent tests of whether their AGN are primarily regulated by radiation pressure.
2 pages, 1 figure, published in RNAAS. Data behind the figure table available in ArXiV source
References in corpus (9)
- The close environments of accreting massive black holes are shaped by radiative feedback
- The effect of radiation pressure on dusty absorbing gas around AGN
- Radiation pressure and absorption in AGN: results from a complete unbiased sample from Swift
- A hard X-ray view of Luminous and Ultra-luminous Infrared Galaxies in GOALS: I - AGN obscuration along the merger sequence
- BAT AGN Spectroscopic Survey XXI: The Data Release 2 Overview
- BASS XXXVII: The role of radiative feedback in the growth and obscuration properties of nearby supermassive black holes
- Reverberation Mapping Measurements of Black Hole Masses and Broad-Line Region Kinematics in Mrk 817 and NGC 7469
- Following Black Hole Scaling Relations Through Gas-Rich Mergers
- How to Fuel an AGN: Mapping Circumnuclear Gas in NGC 6240 with ALMA