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Constraining Photoionization Models With a Reprojected Optical Diagnostic Diagram

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arxiv 2007.09159 v2 pith:JKYG4NJA submitted 2020-07-17 astro-ph.GA

Constraining Photoionization Models With a Reprojected Optical Diagnostic Diagram

classification astro-ph.GA
keywords compositeregionslambdamodelsdiagramsnitrogenagnsalpha
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Optical diagnostic diagrams are powerful tools to separate different ionizing sources in galaxies. However, the model-constraining power of the most widely-used diagrams is very limited and challenging to visualize. In addition, there have always been classification inconsistencies between diagrams based on different line ratios, and ambiguities between regions purely ionized by active galactic nuclei (AGNs) and composite regions. We present a simple reprojection of the 3D line ratio space composed of [N II]$\lambda 6583$/H$\alpha$, [S II]$\lambda \lambda$6716, 6731/H$\alpha$, and [O III]$\lambda$ 5007/H$\beta$, which reveals its model-constraining power and removes the ambiguity for the true composite objects. It highlights the discrepancy between many theoretical models and the data loci. With this reprojection, we can put strong constraints on the photoionization models and the secondary nitrogen abundance prescription. We find that a single nitrogen prescription cannot fit both the star-forming locus and AGN locus simultaneously, with the latter requiring higher N/O ratios. The true composite regions stand separately from both models. We can compute the fractional AGN contributions for the composite regions, and define demarcations with specific upper limits on contamination from AGN or star formation. When the discrepancy about nitrogen prescriptions gets resolved in the future, it would also be possible to make robust metallicity measurements for composite regions and AGNs.

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Cited by 2 Pith papers

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  1. Mapping Dust Attenuation at Kiloparsec Scales. III. The 2175\AA\ Bump

    astro-ph.GA 2026-07 accept novelty 6.0

    The 2175Å attenuation bump is strongest at low Σ_Hα/Σ_* (especially non-SF regions) while absolute strength tracks dust column, supporting local radiation-field processing of its carriers.

  2. Mapping Dust Attenuation at Kiloparsec Scales. III. The 2175\AA\ Bump

    astro-ph.GA 2026-07 conditional novelty 5.0

    At kiloparsec scales, the 2175 Å dust bump is strongest in non-star-forming regions with the lowest ionized-gas emission per stellar mass and weakens where recent star formation is strong.