Resolving galactic-scale obscuration of X-ray AGN at with COSMOS-Web
arXiv:2306.03205 · doi:10.3847/2041-8213/acdef4
Abstract
A large fraction of the accreting supermassive black hole population is shrouded by copious amounts of gas and dust, particularly in the distant () Universe. While much of the obscuration is attributed to a parsec-scale torus, there is a known contribution from the larger-scale host galaxy. Using JWST/NIRCam imaging from the COSMOS-Web survey, we probe the galaxy-wide dust distribution in X-ray selected AGN up to . Here, we focus on a sample of three AGNs with their host galaxies exhibiting prominent dust lanes, potentially due to their edge-on alignment. These represent 27% (3 out of 11 with early NIRCam data) of the heavily obscured ( cm) AGN population. With limited signs of a central AGN in the optical and near-infrared, the NIRCam images are used to produce reddening maps of the host galaxies. We compare the mean central value of to the X-ray obscuring column density along the line-of-sight to the AGN ( cm). We find that the extinction due to the host galaxy is present (; ) and significantly contributes to the X-ray obscuration at a level of cm assuming an SMC gas-to-dust ratio which amounts to 30% of the total obscuring column density. These early results, including three additional cases from CEERS, demonstrate the ability to resolve such dust structures with JWST and separate the different circumnuclear and galaxy-scale obscuring structures.
12 pages, 8 figures, Accepted for publication in ApJL
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