Molecular Gas Chemistry in AGN I. The IRAM Survey of NGC1068
A. Usero, S. Garcia-Burillo, A. Fuente, J. Martin-Pintado, N. J., Rodriguez-Fernandez

TL;DR
This study investigates the molecular gas chemistry in NGC1068's circumnuclear disk, revealing evidence of X-ray driven chemistry and detecting molecules like SiO and HOC+ for the first time in an extragalactic context.
Contribution
It provides the first detection of SiO and HOC+ in NGC1068's CND, supporting the X-ray Dominated Region model over shock or starburst-driven chemistry.
Findings
Detection of SiO with high abundance, indicating X-ray processing.
First extragalactic detection of reactive ion HOC+.
Smallest HCO+/HOC+ ratio measured in molecular gas.
Abstract
There is observational evidence that nuclear winds and X-rays can heavily influence the physical conditions and chemical abundances of molecular gas in the circumnuclear disks (CND) of Active Galactic Nuclei (AGN). In this paper we probe the chemical status of molecular gas in the CND of NGC1068, a prototypical Seyfert 2 galaxy. Precedent claims that the chemistry of molecular gas in the nucleus of NGC1068 is abnormal by galactic standards were based on the high HCN/CO luminosity ratio measured in the CND. Results from new observations obtained in this survey have served to derive abundances of molecular species such as SiO, CN, HCO+, HOC+, H13CO+ and HCO. These estimates are complemented by a re-evaluation of molecular abundances for HCN, CS and CO, based on previously published single-dish and interferometer observations of NGC1068. We report on the first detection of SiO emission in…
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Taxonomy
TopicsAstrophysics and Star Formation Studies · Stellar, planetary, and galactic studies · Astrophysical Phenomena and Observations
