ALMA Multi-line Imaging of the Nearby Starburst Galaxy NGC 253
David S. Meier (1,2,3), Fabian Walter (4,2), Alberto D. Bolatto (5),, Adam K. Leroy (4), J\"urgen Ott (2), Erik Rosolowsky (7), Sylvain Veilleux, (8,5), Steven R. Warren (5), Axel Weiss (9), Martin A. Zwaan (10), Laura K., Zschaechner (4) ((1) New Mexico Institute of Mining

TL;DR
This study uses ALMA to produce high-resolution, multi-line images of molecular gas in NGC 253's central region, revealing complex chemical and physical properties of the starburst environment.
Contribution
First spatially resolved multi-line imaging of NGC 253's nucleus, providing detailed molecular line data and insights into gas conditions and chemistry in a starburst galaxy.
Findings
High CO/C$^{17}$O ratio indicates moderate CO optical depth.
Dense gas tracers show optical depths comparable to CO.
Chemical signatures of shocks are affected by central radiation fields.
Abstract
We present spatially resolved (50 pc) imaging of molecular gas species in the central kiloparsec of the nearby starburst galaxy NGC 253, based on observations taken with the Atacama Large Millimeter/submillimeter Array (ALMA). A total of 50 molecular lines are detected over a 13 GHz bandwidth imaged in the 3 mm band. Unambiguous identifications are assigned for 27 lines. Based on the measured high CO/CO isotopic line ratio (350), we show that CO(1-0) has moderate optical depths. A comparison of the HCN and HCO with their C-substituted isotopologues shows that the HCN(1-0) and HCO(1-0) lines have optical depths at least comparable to CO(1-0). HCN/HCO (and HCN/HNC) line ratios provide tighter constraints on dense gas properties in this starburst. SiO has elevated abundances across the nucleus. HNCO has the…
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