Cold molecular gas and PAH emission in Seyfert galaxies
A. Alonso-Herrero, M. Pereira-Santaella, D. Rigopoulou, I., Garcia-Bernete, S. Garcia-Burillo, A. J. Dominguez-Fernandez, F. Combes, R., I. Davies, T. Diaz-Santos, D. Esparza-Arredondo, O. Gonzalez-Martin, A., Hernan-Caballero, E. K. S. Hicks, S. F. Hoenig, N. A. Levenson

TL;DR
This study examines the connection between PAH emission and cold molecular gas in Seyfert galaxies, revealing that molecular gas may shield PAHs from harsh nuclear environments, with implications for understanding AGN and star formation interactions.
Contribution
It provides new high-resolution observations linking PAH detection to molecular gas properties and models PAH molecule half-life under X-ray irradiation in Seyfert nuclei.
Findings
Galaxies with PAH detection have more cold molecular gas.
Higher H2 column densities correlate with PAH detection.
Shorter PAH molecule half-life in nuclei without PAH detection.
Abstract
We investigate the relation between the detection of the m PAH feature in the nuclear (pc) regions of 22 nearby Seyfert galaxies and the properties of the cold molecular gas. For the former we use ground-based (0.3-0.6" resolution) mid-infrared (mid-IR) spectroscopy. The cold molecular gas is traced by ALMA and NOEMA high (0.2-1.1") angular resolution observations of the CO(2-1) transition. Galaxies with a nuclear detection of the m PAH feature contain more cold molecular gas (median ) and have higher column densities () over the regions sampled by the mid-IR slits than those without a detection. This suggests that molecular gas plays a role in shielding the PAH molecules in the harsh environments of Seyfert nuclei. Choosing the PAH molecule naphthalene as an illustration, we…
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