Blooming Trees: Substructures and Surrounding Groups of Galaxy Clusters
arXiv:1805.12306 · doi:10.3847/1538-4357/aac263
Abstract
We develop the Blooming Tree Algorithm, a new technique that uses spectroscopic redshift data alone to identify the substructures and the surrounding groups of galaxy clusters, along with their member galaxies. Based on the estimated binding energy of galaxy pairs, the algorithm builds a binary tree that hierarchically arranges all the galaxies in the field of view. The algorithm searches for buds, corresponding to gravitational potential minima on the binary tree branches; for each bud, the algorithm combines the number of galaxies, their velocity dispersion and their average pairwise distance into a parameter that discriminates between the buds that do not correspond to any substructure or group, and thus eventually die, and the buds that correspond to substructures and groups, and thus bloom into the identified structures. We test our new algorithm with a sample of 300 mock redshift surveys of clusters in different dynamical states; the clusters are extracted from a large cosmological -body simulation of a CDM model. We limit our analysis to substructures and surrounding groups identified in the simulation with mass larger than . With mock redshift surveys with 200 galaxies within 6 ~Mpc from the cluster center, the technique recovers \% of the real substructures and \% of the surrounding groups; in \% of the identified structures, at least 60\% of the member galaxies of the substructures and groups belong to the same real structure. These results improve by roughly a factor of two the performance of the best substructure identification algorithm currently available, the plateau algorithm, and suggest that our Blooming Tree Algorithm can be an invaluable tool for detecting substructures of galaxy clusters and investigating their complex dynamics.
17 pages, 20 figures, accepted by ApJ
References in corpus (32)
- Seven-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- Populating a cluster of galaxies - I. Results at z=0
- The non-gravitational interactions of dark matter in colliding galaxy clusters
- Velocity and spatial biases in CDM subhalo distributions
- The evolution of substructure III: the outskirts of clusters
- CIRS: Cluster Infall Regions in the Sloan Digital Sky Survey I. Infall Patterns and Mass Profiles
- What does the Bullet Cluster tell us about self-interacting dark matter?
- Measuring the Ultimate Mass of Galaxy Clusters: Redshifts and Mass Profiles from the Hectospec Cluster Survey (HeCS)
- Inter-cluster filaments in a CDM Universe
- Structure Finding in Cosmological Simulations: The State of Affairs
- Measuring the escape velocity and mass profiles of galaxy clusters beyond their virial radius
- The IMACS Cluster Building Survey: II. Spectral Evolution of Galaxies in the Epoch of Cluster Assembly
- The evolution of substructure II: linking dynamics to environment
- HeCS-SZ: The Hectospec Survey of Sunyaev-Zeldovich Selected Clusters
- The CoDECS project: a publicly available suite of cosmological N-body simulations for interacting dark energy models
- Subaru Weak-Lensing Survey of Dark Matter Subhalos in the Coma Cluster : Subhalo Mass Function and Statistical Properties
- Substructures in WINGS clusters
- Substructure in lensing clusters and simulations
- Two- and three-dimensional wide-field weak lensing mass maps from the Hyper Suprime-Cam Subaru Strategic Program S16A data
- A Study of Catalogued Nearby Galaxy Clusters in the SDSS-DR4. II. Cluster Substructure
- Effective description of dark matter self-interactions in small dark matter haloes
- The Contribution of Halos with Different Mass Ratios to the Overall Growth of Cluster-Sized Halos
- X-ray Emitting Groups in the Infall Region of Abell 2199
- Deep spectroscopy of nearby galaxy clusters: I. Spectroscopic luminosity function of Abell 85
- Identification of galaxy cluster substructures with the Caustic method
- WMAP5 and the Cluster Mass Function
- The mass accretion rate of galaxy clusters: a measurable quantity
- The unrelaxed dynamical structure of the galaxy cluster Abell 85
- Quantifying substructures in {\it Hubble Frontier Field} clusters: comparison with simulations
- A WISE View of a Nearby Supercluster A2199
- The galaxy population of the complex cluster system Abell 3921
- A weak lensing view of the downsizing of star-forming galaxies
Cited by in corpus (8)
- Dynamical state for 964 galaxy clusters from Chandra X-ray images
- Dynamical state of galaxy clusters evaluated from X-ray images
- Hierarchical Clustering in Astronomy
- The Massively Accreting Cluster A2029
- DS+: a method for the identification of cluster substructures
- Chandra and XMM-Newton observations of A2256: cold fronts, merger shocks, and constraint on the IC emission
- The Way to Quench: Galaxy evolution in Abell 2142
- The Blooming Tree Algorithm at Work: Clusters, Filaments and Superclusters in the Field of A2029