An Assessment of the In-Situ Growth of the Intracluster Light in the High Redshift Galaxy Cluster SpARCS1049+56
arXiv:2203.13764 · doi:10.3847/1538-4357/ac61dd
Abstract
The formation of the stellar mass within galaxy cluster cores is a poorly understood process. It features the complicated physics of cooling flows, AGN feedback, star formation and more. Here, we study the growth of the stellar mass in the vicinity of the Brightest Cluster Galaxy (BCG) in a z = 1.7 cluster, SpARCS1049+56. We synthesize a reanalysis of existing HST imaging, a previously published measurement of the star formation rate, and the results of new radio molecular gas spectroscopy. These analyses represent the past, present and future star formation respectively within this system. We show that a large amount of stellar mass -- between and depending on the data processing -- exists in a long and clumpy tail-like structure that lies roughly 12 kpc off the BCG. Spatially coincident with this stellar mass is a similarly massive reservoir () of molecular gas that we suggest is the fuel for the immense star formation rate of /yr, as measured by infrared observations. Hlavacek-Larrondo et al. 2021 surmised that massive, runaway cooling of the hot intracluster X-ray gas was feeding this star formation, a process that had not been observed before at high-redshift. We conclude, based on the amount of fuel and current stars, that this event may be rare in the lifetime of a cluster, producing roughly 15 to 21% of the Intracluster Light (ICL) mass in one go, though perhaps a common event for all galaxy clusters.
11 pages, 5 figures. Submitted to ApJ. Addressed referee report
References in corpus (21)
- The hierarchical formation of the brightest cluster galaxies
- A unified model for AGN feedback in cosmological simulations of structure formation
- Mid-Infrared Spectral Diagnosis of Submillimeter Galaxies
- Stellar and total baryon mass fractions in groups and clusters since redshift 1
- Simulations of AGN feedback in galaxy clusters and groups: impact on gas fractions and the Lx-T scaling relation
- On the influence of ram-pressure stripping on the star formation of simulated spiral galaxies
- The strong transformation of spiral galaxies infalling into massive clusters at z~0.2
- Diffuse Optical Light in Galaxy Clusters II: Correlations with Cluster Properties
- The nature of star formation in distant ultraluminous infrared galaxies selected in a remarkably narrow redshift range
- Strange filamentary structures ("fireballs") around a merger galaxy in the Coma cluster of galaxies
- The Metallicity Distribution of Intracluster Stars in Virgo
- GASP XXI. Star formation rates in the tails of galaxies undergoing ram-pressure stripping
- What shapes a galaxy? - Unraveling the role of mass, environment and star formation in forming galactic structure
- The Growth of Brightest Cluster Galaxies and Intracluster Light Over the Past Ten Billion Years
- The Growth of Intracluster Light in XCS-HSC Galaxy Clusters from
- Clocking the formation of today's largest galaxies: Wide field integral spectroscopy of Brightest Cluster Galaxies and their surroundings
- Detection of a Substantial Molecular Gas Reservoir in a brightest cluster galaxy at z = 1.7
- Evidence of runaway gas cooling in the absence of supermassive black hole feedback at the epoch of cluster formation
- Constraining the Mass of the Emerging Galaxy Cluster SpARCS1049+56 at z=1.71 with Infrared Weak Lensing
- Multiwavelength radio observations of a Brightest Cluster Galaxy at z=1.71: Detection of a modest Active Galactic Nucleus and evidence for extended star formation
- The Clusters Hiding in Plain Sight (CHiPS) survey: CHIPS1911+4455, a Rapidly-Cooling Core in a Merging Cluster