T-ReX: a graph-based filament detection method
arXiv:1912.00732 · doi:10.1051/0004-6361/201936859
Abstract
Numerical simulations and observations show that galaxies are not uniformly distributed in the universe but, rather, they are spread across a filamentary structure. In this large-scale pattern, highly dense regions are linked together by bridges and walls, all of them surrounded by vast, nearly-empty areas. While nodes of the network are widely studied in the literature, simulations indicate that half of the mass budget comes from a more diffuse part of the network, which is made up of filaments. In the context of recent and upcoming large galaxy surveys, it becomes essential that we identify and classify features of the Cosmic Web in an automatic way in order to study their physical properties and the impact of the cosmic environment on galaxies and their evolution. In this work, we propose a new approach for the automatic retrieval of the underlying filamentary structure from a 2D or 3D galaxy distribution using graph theory and the assumption that paths that link galaxies together with the minimum total length highlight the underlying distribution. To obtain a smoothed version of this topological prior, we embedded it in a Gaussian mixtures framework. In addition to a geometrical description of the pattern, a bootstrap-like estimate of these regularised minimum spanning trees allowed us to obtain a map characterising the frequency at which an area of the domain is crossed. Using the distribution of halos derived from numerical simulations, we show that the proposed method is able to recover the filamentary pattern in a 2D or 3D distribution of points with noise and outliers robustness with a few comprehensible parameters.
16 pages, 16 figures
References in corpus (11)
- Introducing the Illustris Project: Simulating the coevolution of dark and visible matter in the Universe
- The VIMOS Public Extragalactic Redshift Survey (VIPERS): Galaxy segregation inside filaments at
- A filament of dark matter between two clusters of galaxies
- From voids to filaments: environmental transformations of galaxies in the SDSS
- Gas and galaxies in filament between clusters of galaxies: The study of A399-A401
- Quantifying Cosmic Superstructures
- Density and temperature of cosmic-web filaments on scales of tens of megaparsecs
- Like a spider in its web: a study of the Large Scale Structure around the Coma cluster
- Evolution of cosmic filaments and of their galaxy population from MHD cosmological simulations
- A survey of the thermal and non-thermal properties of cosmic filaments
- Bayesian Cosmic Web Reconstruction: BARCODE for Clusters
Cited by in corpus (39)
- Large-scale dark matter simulations
- Populations of filaments from the distribution of galaxies in numerical simulations
- Properties of gas phases around cosmic filaments at z=0 in the Illustris-TNG simulation
- Characterising filaments in the SDSS volume from the galaxy distribution
- Density and temperature of cosmic-web filaments on scales of tens of megaparsecs
- Relative distribution of dark matter, gas, and stars around cosmic filaments in the IllustrisTNG simulation
- Filament profiles from WISExSCOS galaxies as probes of the impact of environmental effects
- The Cosmic Graph: Optimal Information Extraction from Large-Scale Structure using Catalogues
- Multiscale cosmic web detachments, connectivity, and preprocessing in the supercluster SClA2142 cocoon
- Gas distribution from clusters to filaments in IllustrisTNG
- Cosmology with cosmic web environments I. Real-space power spectra
- Flows around galaxies. I. The dependency of galaxy connectivity on cosmic environments and effects on the star-formation rate
- X-ray emission from cosmic web filaments in SRG/eROSITA data
- Detection and analysis of cluster-cluster filaments
- Swarm Intelligence-based Extraction and Manifold Crawling Along the Large-Scale Structure
- The cosmic web around the Coma cluster from constrained cosmological simulations: I. Filaments connected to Coma at
- The large-scale structure around the Fornax-Eridanus Complex
- Probabilistic cosmic web classification using fast-generated training data
- Spin conservation of cosmic filaments
- Graph-based clustering of gamma-ray bursts
- Dissecting a miniature universe: A multi-wavelength view of galaxy quenching in the Shapley supercluster
- Anisotropic satellite accretion onto the Local Group with HESTIA
- Cosmology with cosmic web environments II. Redshift-space auto and cross power spectra
- The Three Hundred project: Estimating the dependence of gas filaments on the mass of galaxy clusters
- Neutral hydrogen filaments in interstellar media: Are they physical?
- The four cosmic tidal web elements from the -skeleton
- Infall Profiles for Supercluster-Scale Filaments
- Statistical properties of filaments in the cosmic web
- Cascade of Phase Transitions for Multi-Scale Clustering
- Continuous Filament Network of the Local Universe
- Galaxy Superclusters and Their Complexes in the Cosmic Web
- Tracing gaseous filaments connected to galaxy clusters: the case study of Abell 2744
- Shape and connectivity of groups and clusters: Impact of dynamical state and accretion history
- Detection of pure warm-hot intergalactic medium emission from a Mpc long filament in the Shapley supercluster using X-ray spectroscopy
- Estimating the Masses of Supercluster-Scale Filaments from Redshift Dispersions
- Regularization of Mixture Models for Robust Principal Graph Learning
- X-ray emission in IllustrisTNG circum-cluster environments. II -- Possible origins of the soft X-ray excess emission
- The Filament Rift: CDM's Structural Challenge Against Observation
- A novel Cosmic Filament catalogue from SDSS data