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A COMPARISON OF THE MORPHOLOGICAL PROPERTIES BETWEEN LOCAL AND z ∼ 1 INFRARED LUMINOUS GALAXIES: ARE LOCAL AND HIGH-z (U)LIRGS DIFFERENT?

Authors :
Hung Chao-Ling
Sanders, D. B.
Casey, Caitlin M.
Koss, Michael
Larson, Kirsten L.
Lee, Nicholas
Li, Yanxia
Lockhart, Kelly
Shih, Hsin-Yi
Barnes, Joshua E.
Kartaltepe, Jeyhan S.
Smith, Howard A.
Source :
Astrophysical Journal. 8/10/2014, Vol. 791 Issue 1, p1-1. 1p.
Publication Year :
2014

Abstract

Ultraluminous and luminous infrared galaxies (ULIRGs and LIRGs) are the most extreme star-forming galaxies in the universe and dominate the total star formation rate density at z > 1. In the local universe (z < 0.3), the majority of ULIRGs and a significant portion of LIRGs are triggered by interactions between gas-rich spiral galaxies, yet it is unclear if this is still the case at high z. To investigate the relative importance of galaxy interactions in infrared luminous galaxies, we carry out a comparison of optical morphological properties between local (U)LIRGs and (U)LIRGs at z = 0.5-1.5 based on the same sample selection, morphology classification scheme, and optical morphology at similar rest-frame wavelengths. In addition, we quantify the systematics in comparing local and high-z data sets by constructing a redshifted data set from local (U)LIRGs, in which its data quality mimics the high-z data set. Based on the Gini-M20 classification scheme, we find that the fraction of interacting systems decreases by ∼8% from local to z ≲ 1, and it is consistent with the reduction between local and redshifted data sets (). Based on visual classifications, the merger fraction of local ULIRGs is found to be ∼20% lower compared to published results, and the reduction due to redshifting is . Consequently, the differences of merger fractions between local and z ≲ 1 (U)LIRGs is only ∼17%. These results demonstrate that there is no strong evolution in the fraction of (U)LIRGs classified as mergers at least out to z ∼ 1. At z > 1, the morphology types of ∼30% of (U)LIRGs cannot be determined due to their faintness in the F814W band; thus, the merger fraction measured at z > 1 suffers from large uncertainties. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
0004637X
Volume :
791
Issue :
1
Database :
Academic Search Index
Journal :
Astrophysical Journal
Publication Type :
Academic Journal
Accession number :
97249235
Full Text :
https://doi.org/10.1088/0004-637X/791/1/63