Optical and mid-infrared line emission in nearby Seyfert galaxies
A. Feltre, C. Gruppioni, L. Marchetti, A. Mahoro, F. Salvestrini, M., Mignoli, L. Bisigello, F. Calura, S. Charlot, J. Chevallard, E., Romero-Colmenero, E. Curtis-Lake, I. Delvecchio, O. L. Dors, M. Hirschmann,, T. Jarrett, S. Marchesi, M. E. Moloko, A. Plat, F. Pozzi, R. Sefako

TL;DR
This study combines optical and mid-infrared line diagnostics to improve the identification of active galactic nuclei (AGN) in Seyfert galaxies, highlighting the importance of multi-wavelength analysis and photoionization models.
Contribution
It provides a comprehensive joint optical and mid-IR analysis of Seyfert galaxies, testing photoionization models and identifying effective line ratio diagnostics for AGN activity.
Findings
Pure AGN photoionization models reproduce observations with >50% AGN contribution.
Mid-IR line ratios depend on AGN fractional contribution, unlike optical ratios.
Optical-mid IR line ratios involving [OI]/Halpha are promising for diagnosing ionization sources.
Abstract
Line ratio diagnostics provide valuable clues on the source of ionizing radiation in galaxies with intense black hole accretion and starbursting events, such as local Seyfert or galaxies at the peak of the star formation history. We aim to provide a reference joint optical and mid-IR analysis for studying AGN identification via line ratios and testing predictions from photoionization models. We obtained homogenous optical spectra with the Southern Africa Large Telescope for 42 Seyfert galaxies with Spitzer/IRS spectroscopy and X-ray to mid-IR multiband data available. After confirming the power of the main optical ([OIII]) and mid-IR ([NeV], [OIV], [NeIII]) emission lines in tracing AGN activity, we explore diagrams based on ratios of optical and mid-IR lines by exploiting photoionization models of different ionizing sources (AGN, star formation and shocks). We find that pure AGN…
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Taxonomy
TopicsAstrophysical Phenomena and Observations
