Multi-molecule ALMA observations towards the Seyfert 1 galaxy NGC 1097
S.Martin, K. Kohno, T. Izumi, M. Krips, D. S. Meier, R. Aladro, S., Matsushita, S. Takano, J. L. Turner, D. Espada, T. Nakajima, Y. Terashima, K., Fathi, P.-Y. Hsieh, M. Imanishi, A. Lundgren, N. Nakai, E. Schinnerer, K., Sheth, and T. Wiklind

TL;DR
This study uses ALMA to map molecular species in NGC 1097, revealing distinct chemical signatures in the AGN vicinity and star-forming ring, and providing insights into the physical and chemical structure of the galaxy's central region.
Contribution
First detailed ALMA molecular line survey of NGC 1097, distinguishing chemical environments around the AGN and star-forming regions, and challenging previous assumptions about HCN enhancements.
Findings
HNCO, SiO, HC3N are enhanced near the AGN.
CCH traces early and obscured star formation.
Differences in molecular ratios are linked to physical conditions.
Abstract
The nearby Sy 1 galaxy NGC 1097 represents an ideal laboratory to explore the molecular chemistry in the presence and surroundings of an active galactic nucleus. Exploring the distribution of different molecular species allows us to understand the physical processes affecting the ISM both in the AGN vicinity as well as in the outer star forming molecular ring. We carried out 3 mm ALMA observations of HCN, HCO+, CCH, CS, HNCO, SiO, HC3N, and SO as well as the 13C isotopologues. All species were imaged over the central 2 kpc (~30") of the galaxy at a resolution of ~2.2"x1.5 (150 pc x 100 pc). HCO+ and CS appear to be slightly enhanced in the star forming ring. CCH, showing the largest variations across NGC 1097, is suggested to be a good tracer of both obscured and early stage star formation. HNCO, SiO and HC3N are significantly enhanced in the inner circumnuclear disk surrounding the…
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