Extremely Buried Nucleus of IRAS 172080014 Observed at Sub-Millimeter and Near-Infrared Wavelengths
arXiv:2202.11105 · doi:10.3847/1538-4357/ac57c2
Abstract
The ultraluminous infrared galaxy IRAS 172080014 is a late-stage merger that hosts a buried active galactic nucleus (AGN). To investigate its nuclear structure, we performed high spatial resolution () Atacama Large Millimeter/submillimeter Array (ALMA) observations in Band 9 (450\,\micron\ or 660\,GHz), along with near-infrared AKARI spectroscopy in 2.5--5.0\,\micron. The Band 9 dust continuum peaks at the AGN location, and toward this position CO(=6--5) and CS(=14--13) are detected in absorption. Comparison with non-local thermal equilibrium calculations indicates that, within the central beam (), there exists a concentrated component that is dense () and warm (200\,K) and has a large column density (). The AKARI spectrum shows deep and broad CO ro-vibrational absorption at 4.67\,\micron. Its band profile is well reproduced with a similarly dense and large column but hotter (1000\,K) gas. The region observed through absorption in the near-infrared is highly likely in the nuclear direction, as in the sub-millimeter, but with a narrower beam including a region closer to the nucleus. The central component is considered to possess a hot structure where vibrationally excited HCN emission originates. The most plausible heating source for the gas is X-rays from the AGN. The AKARI spectrum does not show other AGN signs in 2.5--4\,\micron, but this absence may be usual for AGNs buried in a hot mid-infrared core. Besides, based on our ALMA observations, we relate various nuclear structures of IRAS 172080014 that have been proposed in the literature.
28 pages, 16 figures, accepted for publication in ApJ
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