Exploring the molecular chemistry and excitation in obscured luminous infrared galaxies: An ALMA mm-wave spectral scan of NGC 4418
F. Costagliola (1,3), K. Sakamoto (2), S. Muller (3), S. Mart\'in (4),, S. Aalto (3), N. Harada (2), P. van der Werf (5), S. Viti (6), S., Garcia-Burillo (7), M. Spaans (8) ((1) Istituto de Astrof\'isica de, Andaluc\'ia IAA-CSIC, Glorieta de la Astronom\'ia, s/n, E-18008 Granada

TL;DR
This study presents an extensive ALMA spectral scan of NGC 4418, revealing complex molecular chemistry, excitation conditions, and similarities to other obscured nuclei, suggesting a young AGN/starburst environment.
Contribution
First detailed molecular inventory and excitation analysis of NGC 4418 using ALMA spectral data, highlighting its unique chemistry and potential as a template for compact obscured nuclei.
Findings
Detected 317 emission lines from 45 molecular species.
Identified high vibrational temperatures indicating a compact IR source.
Found molecular abundances similar to Arp 220, suggesting common chemistry in obscured nuclei.
Abstract
We obtained an ALMA Cycle 0 spectral scan of the dusty LIRG NGC 4418, spanning a total of 70.7 GHz in bands 3, 6, and 7. We use a combined local thermal equilibrium (LTE) and non-LTE (NLTE) fit of the spectrum in order to identify the molecular species and derive column densities and excitation temperatures. We derive molecular abundances and compare them with other Galactic and extragalactic sources by means of a principal component analysis. We detect 317 emission lines from a total of 45 molecular species, including 15 isotopic substitutions and six vibrationally excited variants. Our LTE/NLTE fit find kinetic temperatures from 20 to 350 K, and densities between 10 and 10 cm. The spectrum is dominated by vibrationally excited HCN, HCN, and HNC, with vibrational temperatures from 300 to 450 K. We find high abundances of HCN, SiO, HS, and c-HCCCH and a low…
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