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Abstract We evaluate the underlying assumptions for the identification of active galactic nuclei (AGNs) through near- and mid-infrared photometry and spectral energy distribution (SED) fitting out to z ∼ 3. For massive galaxies, log( M ) ≥ 9.5, our high-resolution spectra of the rest optical range generally confirm the results of SED fitting, which relies primarily on excesses above the stellar emission between 1 and 6 μ m to identify AGN. However, the method is undermined if the redshift used for the SED fitting is incorrect. Low-mass galaxies, log( M ) < 9.5, can contain relatively warm dust that emits in the 4–6 μ m range. We show that the potential contamination of AGN samples by purely star-forming low-mass galaxies can be avoided by the use of the infrared properties of Haro 11 as a limiting star-forming SED template. However, relatively few star-forming galaxies emit as strongly in the 3–6 μ m range as this template, so this could result in missing some obscured AGNs to avoid a minor contamination. Including the behavior of the galaxies at rest λ ∼ 13.5 μ m can mitigate this problem and yield more complete samples of bona fide AGN. JWST/MIRI supports this approach out to z ≲ 0.6.
Rieke et al. (Wed,) studied this question.