IDCS J1426.5+3508: The Most Massive Galaxy Cluster at $z > 1.5$
Abstract
We present a deep (100 ks) Chandra observation of IDCS J1426.5+3508, a spectroscopically confirmed, infrared-selected galaxy cluster at . This cluster is the most massive galaxy cluster currently known at , based on existing Sunyaev-Zel'dovich (SZ) and gravitational lensing detections. We confirm this high mass via a variety of X-ray scaling relations, including -M, -M, -M and -M, finding a tight distribution of masses from these different methods, spanning M = 2.3-3.3 M, with the low-scatter -based mass M. IDCS J1426.5+3508 is currently the only cluster at for which X-ray, SZ and gravitational lensing mass estimates exist, and these are in remarkably good agreement. We find a relatively tight distribution of the gas-to-total mass ratio, employing total masses from all of the aforementioned indicators, with values ranging from = 0.087-0.12. We do not detect metals in the intracluster medium (ICM) of this system, placing a 2 upper limit of . This upper limit on the metallicity suggests that this system may still be in the process of enriching its ICM. The cluster has a dense, low-entropy core, offset by 30 kpc from the X-ray centroid, which makes it one of the few "cool core" clusters discovered at , and the first known cool core cluster at . The offset of this core from the large-scale centroid suggests that this cluster has had a relatively recent (500 Myr) merger/interaction with another massive system.
Keywords
Cite
@article{arxiv.1504.01397,
title = {IDCS J1426.5+3508: The Most Massive Galaxy Cluster at $z > 1.5$},
author = {Mark Brodwin and Michael McDonald and Anthony H. Gonzalez and S. A. Stanford and Peter R. Eisenhardt and Daniel Stern and Gregory R. Zeimann},
journal= {arXiv preprint arXiv:1504.01397},
year = {2016}
}
Comments
Minor changes to match accepted version, results unchanged; ApJ in press