Photoionization models of the CALIFA HII regions. I. Hybrid models
C. Morisset (1), G. Delgado-Inglada (1), S. F. S\'anchez (1), L., Galbany (2, 3), R. Garcia-Benito (4), B. Husemann (5), R. A. Marino (6 and, 7), D. Mast (4), M. M. Roth (8), CALIFA Colaboration ((1) Instituto de, Astronom\'ia, Universidad Nacional Autonoma de Mexico

TL;DR
This paper develops hybrid photoionization models for CALIFA HII regions by combining stellar population synthesis with nebular emission, resolving parameter degeneracies and providing new relations for ionization and abundance diagnostics.
Contribution
It introduces a method to fix the ionizing SED using spectral synthesis, creating a large set of models that accurately fit observed emission lines and are publicly available.
Findings
Resolved the degeneracy between SED hardness and ionization parameter U.
Derived new empirical relations between U, N/O, and O/H.
Found high photon leakage (~80%) in young stellar regions.
Abstract
Photoionization models of HII regions require as input a description of the ionizing SED and of the gas distribution, in terms of ionization parameter U and chemical abundances (e.g. O/H and N/O). A strong degeneracy exists between the hardness of the SED and U, which in turn leads to high uncertainties in the determination of the other parameters, including abundances. One way to resolve the degeneracy is to fix one of the parameters using additional information. For each of the ~ 20000 sources of the CALIFA HII regions catalog, a grid of photoionization models is computed assuming the ionizing SED being described by the underlying stellar population obtained from spectral synthesis modeling. The ionizing SED is then defined as the sum of various stellar bursts of different ages and metallicities. This solves the degeneracy between the shape of the ionizing SED and U. The nebular…
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