A photoionization model of the spatial distribution of the optical and mid-IR properties in NGC595
Enrique Perez-Montero (IAA-CSIC), Monica Relano (IoA), Jose M. Vilchez, (IAA-CSIC), Ana Monreal-Ibero (AIP, IAA-CSIC)

TL;DR
This paper develops a novel photoionization model that simultaneously fits optical and mid-infrared observations of the HII region NGC595, revealing detailed spatial and physical properties of the region.
Contribution
It introduces a new modeling approach using elliptical annular regions to match multi-wavelength spatial data of an HII region, incorporating dust and ionization details.
Findings
Models successfully fit optical and mid-IR surface brightness profiles.
Reproduces the uniformity of the R23 parameter and ionization ratios.
Explains Halpha profile variation through shell volume differences.
Abstract
We present a set of photoionization models that reproduce simultaneously the observed optical and mid-infrared spatial distribution of the HII region NGC595 in the disk of M33 using the code CLOUDY. Both optical (PMAS-Integral Field Spectroscopy) and mid-infrared (8 mi and 24 mi bands from Spitzer) data provide enough spatial resolution to model in a novel approach the inner structure of the HII region. We define a set of elliptical annular regions around the central ionizing cluster with an uniformity in their observed properties and consider each annulus as an independent thin shell structure. For the first time our models fit the relative surface brightness profiles in both the optical (Halpha, [OII], [OIII]) and the mid-infrared emissions (8 mi and 24 mi), under the assumption of a uniform metallicity (12+log(O/H) = 8.45; Esteban et al. 2009) and an age for the stellar cluster of…
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