paper

Exploring the hardness of the ionizing radiation with the infrared softness diagram. II. Bimodal distributions in both the ionizing continuum slope and the excitation in active galactic nuclei

arXiv:2503.09267 · doi:10.1051/0004-6361/202453276

Abstract

After exploring the infrared softness diagram to characterize the hardness of the incident ionizing radiation in star-forming regions, we exploit the availability of high-excitation lines in the same spectral regime to explore its use for studying the narrow-line regions in AGN. We adapted the IR softness diagram to consider very high-excitation lines, such as [Ne V] 14.3,24.3 m or [O IV] 25.9m. The measured emission-line ratios were included as inputs for the code HCm-Teff-IR, in order to provide a quantification for both the ionization and the parameters. The latter is sensitive to the spectral shape of the incident continuum in AGN. We applied this to a large AGN sample including different spectral types with available Spitzer/IRS, Herschel/PACS and/or SOFIA/FIFI-LS mid-IR spectroscopic observations. The combination of the ([Ne II] 12.8 m+[Ne III] 15.6m)/[Ne V] 14.3m and [O III] 52,88 m/[O IV] 25.9m emission line ratios is a robust proxy for the shape of the ionizing continuum in AGN. An alternative based on the [S III] 18.7 m+[S IV] 10.5m lines can be used instead. The inclusion of very high-excitation lines in HCm-Teff-IR, to derive both and for the studied sample, points to a bimodal distribution of galaxies. One of the peaks is characterized by relatively harder values of around -1.4 in combination with low values for log around -2.4, while the other peak shows a softer around -1.7 and high values of log around-1.5. This result is consistent with the existence of two very marked AGN populations., one with a softer ionizing continuum, possibly dominated by a radiatively efficient accretion disk in bright Seyfert nuclei. In contrast, we observe a harder radiation field in low-luminosity AGN, where the accretion disk is expected to recede.

12 pages, 6 figures. Accepted for publication by Astronomy & Astrophysics. Version edited by A/A

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