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Star Formation Quenching in High-redshift Large-scale Structure: Post-starburst Galaxies in the Cl 1604 Supercluster at z∼0.9

Wu, Po-Feng and Gal, Roy R. and Lemaux, Brian C. and Kocevski, Dale D. and Lubin, Lori M. and Rumbaugh, Nicholas and Squires, Gordon K. (2014) Star Formation Quenching in High-redshift Large-scale Structure: Post-starburst Galaxies in the Cl 1604 Supercluster at z∼0.9. Astrophysical Journal, 792 (1). Art. No. 16. ISSN 0004-637X. https://resolver.caltech.edu/CaltechAUTHORS:20140925-081927253

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Abstract

The Cl 1604 supercluster at z ~ 0.9 is one of the most extensively studied high-redshift large-scale structures, with more than 500 spectroscopically confirmed members. It consists of eight clusters and groups, with members numbering from a dozen to nearly a hundred, providing a broad range of environments for investigating the large-scale environmental effects on galaxy evolution. Here we examine the properties of 48 post-starburst galaxies in Cl 1604, comparing them to other galaxy populations in the same supercluster. Incorporating photometry from ground-based optical and near-infrared imaging, along with Spitzer mid-infrared observations, we derive stellar masses for all Cl 1604 members. The colors and stellar masses of the K+A galaxies support the idea that they are progenitors of red sequence galaxies. Their morphologies, residual star formation rates, and spatial distributions suggest that galaxy mergers may be the principal mechanism producing post-starburst galaxies. Interaction between galaxies and the dense intracluster medium (ICM) is also effective, but only in the cores of dynamically evolved clusters. The prevalence of post-starburst galaxies in clusters correlates with the dynamical state of the host cluster, as both galaxy mergers and the dense ICM produce post-starburst galaxies. We also investigate the incompleteness and contamination of K+A samples selected by means of Hδ and [O II] equivalent widths. K+A samples may be up to ~50% incomplete due to the presence of LINERs/Seyferts, and up to ~30% of K+A galaxies could have substantial star formation activity.


Item Type:Article
Related URLs:
URLURL TypeDescription
http://arxiv.org/abs/1311.0586arXivArticle
http://dx.doi.org/10.1088/0004-637X/792/1/16DOIArticle
http://iopscience.iop.org/0004-637X/792/1/16PublisherArticle
ORCID:
AuthorORCID
Lemaux, Brian C.0000-0002-1428-7036
Squires, Gordon K.0000-0002-1977-5717
Additional Information:© 2014 American Astronomical Society. Received 2013 November 1; accepted 2014 June 14; published 2014 August 11. We thank the anonymous referee for thorough comments and suggestions, which significantly improved this paper. Support for Program number HST-GO-11003 was provided by the National Aeronautics and Space Administration (NASA) through a grant from the Space Telescope Science Institute, which is operated by the Association of Universities for Research in Astronomy, Incorporated, under NASA contract NAS 5-26555. We acknowledge support by the National Science Foundation under grant AST-0907858. This work is also based in part on observations made with the Spitzer Space Telescope, which is operated by the Jet Propulsion Laboratory, California Institute of Technology, under a contract with NASA. Support for this work was provided by NASA through an award issued by JPL/Caltech. The spectrographic data presented hereinwere obtained at the W. M. Keck Observatory, which is operated as a scientific partnership among the California Institute of Technology, the University of California, and the National Aeronautics and Space Administration. The Observatory was made possible by the generous financial support of the W. M. Keck Foundation. This publication makes use of data products from the Two Micron All Sky Survey, which is a joint project of the University of Massachusetts and the Infrared Processing and Analysis Center/California Institute of Technology, funded by the National Aeronautics and Space Administration and the National Science Foundation. Near-IR data were taken with the United Kingdom Infrared Telescope, operated by the Joint Astronomy Centre on behalf of the Science and Technology Facilities Council of the U.K. As always, we thank the indigenous Hawaiian community for allowing us to be guests on their sacred mountain. We are most fortunate to be able to conduct observations from this site.
Funders:
Funding AgencyGrant Number
NASA Space Telescope Science InstituteHST-GO-11003
NASANAS 5-26555
NSFAST-0907858
NASA/JPL/CaltechUNSPECIFIED
W. M. Keck FoundationUNSPECIFIED
NASAUNSPECIFIED
NSFUNSPECIFIED
Subject Keywords: galaxies: clusters: general; galaxies: evolution
Issue or Number:1
Record Number:CaltechAUTHORS:20140925-081927253
Persistent URL:https://resolver.caltech.edu/CaltechAUTHORS:20140925-081927253
Official Citation:Star Formation Quenching in High-redshift Large-scale Structure: Post-starburst Galaxies in the Cl 1604 Supercluster at z ~ 0.9 Po-Feng Wu (吳柏鋒) et al. 2014 ApJ 792 16
Usage Policy:No commercial reproduction, distribution, display or performance rights in this work are provided.
ID Code:50015
Collection:CaltechAUTHORS
Deposited By: Ruth Sustaita
Deposited On:25 Sep 2014 17:13
Last Modified:09 Mar 2020 13:19

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