GOODS-Herschel and CANDELS: The Morphologies of Ultraluminous Infrared Galaxies at z~2
Jeyhan S. Kartaltepe, Mark Dickinson, David M. Alexander, Eric F., Bell, Tomas Dahlen, David Elbaz, S. M. Faber, Jennifer Lotz, Daniel H., McIntosh, Tommy Wiklind, Bruno Altieri, Herve Aussel, Matthieu Bethermin,, Frederic Bournaud, Vassilis Charmandaris

TL;DR
This study analyzes the morphologies of ultraluminous infrared galaxies at z~2 using deep infrared and HST imaging, revealing high interaction rates and external triggers for starbursts, with evolution similar to local galaxies.
Contribution
First comprehensive morphological analysis of FIR-selected ULIRGs at z~2, comparing with lower redshift samples to understand galaxy evolution and merger roles.
Findings
High fraction of mergers and irregulars among ULIRGs at z~2.
Morphological fractions similar to z~1 at comparable luminosities.
Majority of ULIRGs are starbursts, often involved in interactions.
Abstract
Using deep 100-160 micron observations in GOODS-S from the GOODS-H survey, combined with HST/WFC3 NIR imaging from CANDELS, we present the first morphological analysis of a complete, FIR selected sample of 52 ULIRGs at z~2. We also make use of a comparison sample of galaxies without Herschel detections but with the same z and magnitude distribution. Our visual classifications of these two samples indicate that the fraction of objects with disk and spheroid morphologies is roughly the same but that there are significantly more mergers, interactions, and irregular galaxies among the ULIRGs. The combination of disk and irregular/interacting morphologies suggests that early stage interactions and minor mergers could play an important role in ULIRGs at z~2. We compare these fractions with those of a z~1 sample across a wide luminosity range and find that the fraction of disks decreases…
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