The molecular gas properties in local Seyfert 2 galaxies
F. Salvestrini, C. Gruppioni, E. Hatziminaoglou, F. Pozzi, C. Vignali,, V. Casasola, R. Paladino, S. Aalto, P. Andreani, S. Marchesi, T. Stanke

TL;DR
This study investigates how active galactic nuclei in local Seyfert 2 galaxies influence the molecular gas and dust properties of their host galaxies, finding that AGN impact is mainly seen in PAH emission suppression rather than large-scale molecular gas reduction.
Contribution
It provides a comparative analysis of molecular gas and PAH emission in Seyfert 2 galaxies versus star-forming galaxies, highlighting the localized effect of AGN activity on the ISM.
Findings
AGN in less massive galaxies have larger molecular gas content.
No significant reduction in total molecular gas reservoir in Seyfert 2 galaxies.
AGN activity suppresses PAH luminosity in the mid-infrared.
Abstract
We present a multi-wavelength study of the molecular gas properties of a sample of local Seyfert 2 galaxies to assess if, and to what extent, the presence of an active galactic nucleus (AGN) can affect the Interstellar Medium (ISM) properties in a sample of 33 local Seyfert 2 galaxies. We compare the molecular gas content (MH2), derived from new and archival low-J CO line measurements of a sample of AGN and a control sample of star-forming galaxies (SFGs). Both the AGN and the control sample are characterised in terms of host-galaxy properties (e.g., stellar and dust masses, Mstar and Mdust, respectively; and star formation rate, SFR). We also investigate the effect of AGN activity onto the emission of polycyclic aromatic hydrocarbon (PAH) molecules in the mid-infrared (MIR), a waveband where the dust-reprocessed emission from the obscured AGN contributes the most. The AGN hosted in…
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