The Galaxy Activity, Torus, and Outflow Survey (GATOS). V: Unveiling PAH survival and resilience in the circumnuclear regions of AGN with JWST
I. Garc\'ia-Bernete, D. Rigopoulou, F. R. Donnan, A. Alonso-Herrero,, M. Pereira-Santella, T. Shimizu, R. Davies, P. F. Roche, S. Garc\'ia-Burillo,, A. Labiano, L. Hermosa Mu\~noz, L. Zhang, A. Audibert, E. Bellocchi, A., Bunker, F. Combes, D. Delaney, D. Esparza-Arredondo

TL;DR
This study uses JWST observations to analyze PAH molecules in the nuclear and circumnuclear regions of AGN, revealing their resilience and the influence of AGN activity on PAH properties across different scales.
Contribution
First detailed JWST-based analysis of PAH properties in AGN regions, highlighting AGN impact on PAH ionization and size, and evaluating diagnostic diagrams for activity discrimination.
Findings
AGN regions show higher neutral PAH fractions compared to star-forming areas.
AGN influence extends up to kiloparsec scales affecting PAH ionization.
PAH bands vary in resilience, impacting star-formation rate estimates.
Abstract
We analyze JWST MIRI/MRS observations of the infrared PAH bands in the nuclear and circumnuclear regions of local AGN from the GATOS Survey. In this work, we examine the PAH properties in the circumnuclear regions of AGN and AGN-outflows, and compare them to those in star-forming regions and the innermost regions of AGN. This study employs 4.9-28.1 micron sub-arcsecond angular resolution data to investigate the properties of PAH in three nearby sources (DL~30-40 Mpc). Our findings align with previous JWST studies, showing that the central regions of AGN show a larger fraction of neutral PAH molecules (i.e. elevated 11.3/6.2 and 11.3/7.7 PAH ratios) compared to star-forming galaxies. We find that the AGN might affect not only the PAH population in the innermost region but also in the extended regions up to ~kpc scales. By comparing our observations to PAH diagnostic diagrams, we find…
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Taxonomy
TopicsAstronomy and Astrophysical Research · Gamma-ray bursts and supernovae · Solar and Space Plasma Dynamics
