Chaotic and Clumpy Galaxy Formation in an Extremely Massive Reionization-Era Halo
Abstract
The SPT0311-58 system at z=6.900 is an extremely massive structure within the reionization epoch, and offers a chance to understand the formation of galaxies in an extreme peak in the primordial density field. We present 70mas Atacama Large Millimeter/submillimeter Array observations of the dust continuum and CII 158um emission in the central pair of galaxies and reach physical resolution ~100-350pc, among the most detailed views of any reionization-era system to date. The observations resolve the source into at least a dozen kiloparsec-size clumps. The global kinematics and high turbulent velocity dispersion within the galaxies present a striking contrast to recent claims of dynamically cold thin-disk kinematics in some dusty galaxies just 800Myr later at z~4. We speculate that both gravitational interactions and fragmentation from massive parent disks have likely played a role in the overall dynamics and formation of clumps in the system. Each clump individually is comparable in mass to other 6<z<8 galaxies identified in rest-UV/optical deep field surveys, but with star formation rates elevated by ~3-5x. Internally, the clumps themselves bear close resemblance to greatly scaled-up versions of virialized cloud-scale structures identified in low-redshift galaxies. Our observations are qualitatively similar to the chaotic and clumpy assembly within massive halos seen in simulations of high-redshift galaxies.
Keywords
Cite
@article{arxiv.2203.14972,
title = {Chaotic and Clumpy Galaxy Formation in an Extremely Massive Reionization-Era Halo},
author = {Justin S. Spilker and Christopher C. Hayward and Daniel P. Marrone and Manuel Aravena and Matthieu Bethermin and James Burgoyne and Scott C. Chapman and Thomas R. Greve and Gayathri Gururajan and Yashar D. Hezaveh and Ryley Hill and Katrina C. Litke and Christopher C. Lovell and Matthew A. Malkan and Eric J. Murphy and Desika Narayanan and Kedar A. Phadke and Cassie Reuter and Antony A. Stark and Nikolaus Sulzenauer and Joaquin D. Vieira and David Vizgan and Axel Weiss},
journal= {arXiv preprint arXiv:2203.14972},
year = {2022}
}
Comments
Accepted for publication in ApJ Letters, 9 pages, 5 figures. Interactive versions of Fig. 2 and data products are available at https://github.com/spt-smg/publicdata