We have used the Mid-InfraRed Instrument (MIRI) on the James Webb Space Telescope (JWST) to obtain the first spatially resolved, mid-infrared (mid-IR) images of IIZw096, a merging luminous infrared galaxy (LIRG) at z=0.036. Previous observations with the Spitzer Space Telescope suggested that the vast majority of the total IR luminosity (LIR) of the system originated from a small region outside of the two merging nuclei. New observations with JWST/MIRI now allow an accurate measurement of the location and luminosity density of the source that is responsible for the bulk of the IR emission. We estimate that 40-70% of the IR bolometric luminosity, or 3−5×1011L⊙, arises from a source no larger than 175pc in radius, suggesting a luminosity density of at least 3−5×1012L⊙kpc−2. In addition, we detect 11 other star forming sources, five of which were previously unknown. The MIRI F1500W/F560W colors of most of these sources, including the source responsible for the bulk of the far-IR emission, are much redder than the nuclei of local LIRGs. These observations reveal the power of JWST to disentangle the complex regions at the hearts of merging, dusty galaxies.
@article{arxiv.2208.10647,
title = {GOALS-JWST: Unveiling Dusty Compact Sources in the Merging Galaxy IIZw096},
author = {Hanae Inami and Jason Surace and Lee Armus and Aaron S. Evans and Kirsten L. Larson and Loreto Barcos-Munoz and Sabrina Stierwalt and Joseph M. Mazzarella and George C. Privon and Yiqing Song and Sean Linden and Christopher C. Hayward and Torsten Boker and Vivian U and Thomas Bohn and Vassilis Charmandaris and Tanio Diaz-Santos and Justin H. Howell and Thomas Lai and Anne M. Medling and Jeffrey A. Rich and Susanne Aalto and Philip Appleton and Michael J. I. Brown and Shunshi Hoshioka and Kazushi Iwasawa and Francisca Kemper and David Law and Matthew A. Malkan and Jason Marshall and Eric J. Murphy and David Sanders and Paul van der Werf},
journal= {arXiv preprint arXiv:2208.10647},
year = {2022}
}
Comments
3 figures, 1 table, Accepted for publication in ApJL