Local Luminous Infrared Galaxies: Spatially resolved mid-infrared observations with Spitzer/IRS
Almudena Alonso-Herrero (1), Miguel Pereira-Santaella (1), George H., Rieke (2), Luis Colina (1), Charles W. Engelbracht (2), Pablo Perez-Gonzalez, (3), Tanio Diaz-Santos (4), J. D. T. Smith (5) ((1) IEM-CSIC, Spain, (2), University of Arizona, (3) UCM, Spain

TL;DR
This study uses spatially resolved mid-infrared observations from Spitzer/IRS to analyze local Luminous Infrared Galaxies, aiming to understand their properties and serve as templates for distant galaxy studies.
Contribution
It provides the first spatially resolved mid-IR spectral maps of local LIRGs, characterizing their emission lines, PAH features, and dust properties to aid high-redshift galaxy research.
Findings
Spatially resolved measurements of star-forming regions and AGN indicators.
Development of spectral templates for local LIRGs.
Predictions of mid-IR line intensities at various redshifts.
Abstract
Luminous Infrared (IR) Galaxies (LIRGs) are an important cosmological class of galaxies as they are the main contributors to the co-moving star formation rate density of the universe at z=1. In this paper we present a GTO Spitzer IRS program aimed to obtain spectral mapping of a sample of 14 local (d<76Mpc) LIRGs. The data cubes map, at least, the central 20arcsec x 20arcsec to 30arcsec x 30arcsec regions of the galaxies, and use all four IRS modules covering the full 5-38micron spectral range. The final goal of this project is to characterize fully the mid-IR properties of local LIRGs as a first step to understanding their more distant counterparts. In this paper we present the first results of this GTO program. The IRS spectral mapping data allow us to build spectral maps of the bright mid-IR emission lines (e.g., [NeII], [NeIII], [SIII], H_2), continuum, the 6.2 and 11.3micron PAH…
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