The Galaxy Replacement Technique (GRT): a New Approach to Study Tidal Stripping and Formation of Intracluster Light in a Cosmological Context
arXiv:2110.09532 · doi:10.3847/1538-4357/ac2cbe
Abstract
We introduce the Galaxy Replacement Technique (GRT) that allows us to model tidal stripping of galaxies with very high-mass (m~M/h) and high-spatial resolution (10 pc/h), in a fully cosmological context, using an efficient and fast technique. The technique works by replacing multiple low-resolution DM halos in the base cosmological simulation with high-resolution models, including a DM halo and stellar disk. We apply the method to follow the hierarchical build-up of a cluster since redshift to now, through the hierarchical accretion of galaxies, individually or in substructures such as galaxy groups. We find we can successfully reproduce the observed total stellar masses of observed clusters since redshift 1. The high resolution allows us to accurately resolve the tidal stripping process and well describe the formation of ultra-low surface brightness features in the cluster ( mag arcsec) such as the intracluster light (ICL), shells and tidal streams. We measure the evolution of the fraction of light in the ICL and brightest cluster galaxy (BCG) using several different methods. While their broad response to the cluster mass growth history is similar, the methods show systematic differences, meaning we must be careful when comparing studies that use distinct methods. The GRT represents a powerful new tool for studying tidal effects on galaxies and exploring the formation channels of the ICL in a fully cosmological context and with large samples of simulated groups and clusters.
18 pages, 9 figures. Accepted for publication in The Astrophysical Journal, October 3rd, 2021
References in corpus (26)
- Forty-Seven Milky Way-Sized, Extremely Diffuse Galaxies in the Coma Cluster
- The Tidal Evolution of Local Group Dwarf Spheroidals
- The Size Evolution of Star-forming and Quenched Galaxies in the IllustrisTNG simulation
- The Importance of Mergers for the Origin of Intracluster Stars in Cosmological Simulations of Galaxy Clusters
- Introducing the NewHorizon simulation: Galaxy properties with resolved internal dynamics across cosmic time
- The Hierarchical Build-Up of Massive Galaxies and the Intracluster Light since z=1
- The Formation and Evolution of Intracluster Light
- Stellar mass estimates in early-type galaxies: procedures, uncertainties and models dependence
- On the Origin of Exponential Galaxy Disks
- Intracluster Light at the Frontier II: The Frontier Fields Clusters
- Satellite quenching timescales in clusters from projected phase space measurements matched to simulated orbits
- The Preferential Tidal Stripping of Dark Matter versus Stars in Galaxies
- Intra-Cluster Light at the Frontier: Abell 2744
- Intra Cluster Light properties in the CLASH-VLT cluster MACS J1206.2-0847
- Probing the merger history of red early-type galaxies with their faint stellar substructures
- On the lifetime of merger features of equal-mass disk mergers
- The Fornax Deep Survey with VST. VIII. Connecting the accretion history with the cluster density
- The Growth of Intracluster Light in XCS-HSC Galaxy Clusters from
- The GEEC2 spectroscopic survey of Galaxy Groups at
- Exploring the Diversity of Groups at 0.1<z<0.8 with X-ray and Optically Selected Samples
- VEGAS: A VST Early-type GAlaxy Survey.VI. The diffuse light in HCG 86 from the ultra-deep VEGAS images
- Investigating the Stellar Mass Growth Histories of Satellite Galaxies as a Function of Infall Time using Phase-Space
- The Three Hundred Project: The gas disruption of infalling objects in cluster environments
- Formation of an ultra-diffuse galaxy in the stellar filaments of NGC3314A: caught in act?
- Brought to Light II: Revealing the Origins of Cloaked Spiral Features in Cluster Passive Dwarf Galaxies
- Galaxy clusters and their outskirts: the "red sequence", star formation rate, stellar mass
Cited by in corpus (7)
- Characterising the intra-cluster light in The Three Hundred simulations
- Comparison of spatial distributions of Intracluster light and Dark Matter
- The formation of the brightest cluster galaxy and intracluster light in cosmological N-body simulations with the Galaxy Replacement Technique
- Swarm Intelligence-based Extraction and Manifold Crawling Along the Large-Scale Structure
- Growth of Ex-situ Diffuse Intragroup Light in Simulated Galaxy Groups
- New observational recipes for measuring dynamical state of galaxy clusters
- On the Origin of Intracluster Light based on the High-resolution Simulation, NewCluster