Molecular gas chemistry in AGN. II. High-resolution imaging of SiO emission in NGC1068: shocks or XDR?
S. Garcia-Burillo, A. Usero, A. Fuente, J. Martin-Pintado, F. Boone,, S. Aalto, M. Krips, R. Neri, E. Schinnerer, L. J. Tacconi

TL;DR
This study uses high-resolution imaging to analyze SiO emission in NGC1068's circumnuclear disk, exploring whether shocks or X-ray dominated regions (XDR) primarily cause molecular gas chemistry alterations.
Contribution
It provides detailed spatially-resolved measurements of SiO and other molecules, linking molecular abundances to nuclear activity and XDR chemistry in NGC1068.
Findings
SiO is detected in a 400pc disk around the AGN.
SiO and CN abundances are elevated near the AGN and correlate with X-ray irradiation.
The molecular gas properties suggest a dominant XDR influence, with shocks also playing a role.
Abstract
This paper is part of a multi-species survey of line emission from the molecular gas in the circum-nuclear disk (CND) of the Seyfert 2 galaxy NGC1068. Single-dish observations have provided evidence that the abundance of silicon monoxide(SiO) in the CND of NGC1068 is enhanced by 3-4 orders of magnitude with respect to the values typically measured in quiescent molecular gas in the Galaxy. We aim at unveiling the mechanism(s) underlying the SiO enhancement. We have imaged with the IRAM Plateau de Bure interferometer the emission of the SiO(2-1) and CN(2--1) lines in NGC1068 at 150pc and 60pc spatial resolution, respectively. We have also obtained complementary IRAM 30m observations of HNCO and methanol (CH3OH) lines. SiO is detected in a disk of 400pc size around the AGN. SiO abundances in the CND of (1-5)xE-09 are about 1-2 orders of magnitude above those measured in the starburst ring.…
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Taxonomy
TopicsAstrophysics and Star Formation Studies · Stellar, planetary, and galactic studies · Galaxies: Formation, Evolution, Phenomena
