A 2D multiwavelength study of the ionized gas and stellar population in the Giant HII Region NGC 588
A. Monreal-Ibero (1,2), M. Rela\~no (3), C. Kehrig (2), E., P\'erez-Montero (1), J. M. V\'ilchez (1), A. Kelz (2), M. M. Roth (2), O., Streicher (2), ((1) IAA-CSIC (Spain), (2) AIP (Germany), (3) Universidad de, Granada (Spain))

TL;DR
This study uses multiwavelength integral field spectroscopy and infrared imaging to analyze the ionized gas, dust, and stellar populations in the Giant HII Region NGC 588, revealing complex structures and ionization conditions.
Contribution
It provides a detailed multiwavelength analysis of NGC 588, highlighting the complex ionization structure and the importance of local conditions in interpreting integrated spectra.
Findings
Dust extinction correlates with infrared emission regions.
Velocity differences suggest NGC 588 is an evolved GHIIR.
Ionization parameter varies radially and affects line ratio diagnostics.
Abstract
(ABRIDGED) We present an analysis of NGC588 based on IFS data with PMAS, together with Spitzer images at 8 mi and 24 mi. The extinction distribution in the optical shows complex structure, with maxima correlating in position with those of the emission at 24 mi and 8 mi. The Ha luminosity absorbed by the dust within the GHIIR reproduces the structure observed in the 24 mi image, supporting the use of this band as a tracer of recent star formation. A velocity difference of ~50 km/s was measured between the areas of high and low surface brightness, which would be expected if NGC588 were an evolved GHIIR. Line ratios used in the BPT diagnostic diagrams show a larger range of variation in the low surface brightness areas. The ranges are ~0.5 to 1.2 dex for [NII]/Ha, 0.7 to 1.7 dex for [SII]/Ha, and 0.3 to 0.5 dex for [OIII]/Hb. Ratios corresponding to large ionization parameter (U) are found…
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