Large scale structure around a z=2.1 cluster
Abstract
The most prodigious starburst galaxies are absent in massive galaxy clusters today, but their connection with large scale environments is less clear at . We present a search of large scale structure around a galaxy cluster core at using a set of spectroscopically confirmed galaxies. We find that both color-selected star-forming galaxies (SFGs) and dusty star-forming galaxies (DSFGs) show significant overdensities around the cluster. A total of 8 DSFGs (including 3 X-ray luminous active galactic nuclei, AGNs) and 34 SFGs are found within a 10 arcmin radius (corresponds to 15 cMpc at ) from the cluster center and within a redshift range of , which leads to galaxy overdensities of and . The cluster core and the extended DSFG- and SFG-rich structure together demonstrate an active cluster formation phase, in which the cluster is accreting a significant amount of material from large scale structure while the more mature core may begin to virialize. Our finding of this DSFG-rich structure, along with a number of other protoclusters with excess DSFGs and AGNs found to date, suggest that the overdensities of these rare sources indeed trace significant mass overdensities. However, it remains puzzling how these intense star formers are triggered concurrently. Although an increased probability of galaxy interactions and/or enhanced gas supply can trigger the excess of DSFGs, our stacking analysis based on 850 m images and morphological analysis based on rest-frame optical imaging do not show such enhancements of merger fraction and gas content in this structure.
Cite
@article{arxiv.1605.07176,
title = {Large scale structure around a z=2.1 cluster},
author = {Chao-Ling Hung and Caitlin M. Casey and Yi-Kuan Chiang and Peter Capak and Michael J. Cowley and Behnam Darvish and Glenn G. Kacprzak and K. Kovac and Simon J. Lilly and Themiya Nanayakkara and Lee R. Spitler and Kim-Vy H. Tran and Tiantian Yuan},
journal= {arXiv preprint arXiv:1605.07176},
year = {2016}
}
Comments
11 pages, 4 figures, ApJ accepted