Properties of clumps and filaments around galaxy clusters
arXiv:2102.01096 · doi:10.1051/0004-6361/202140471
Abstract
We report on the possibility of studying the proprieties of cosmic diffuse baryons by studying self-gravitating clumps and filaments connected to galaxy clusters. While filaments are challenging to detect with X-ray observations, the higher density of clumps makes them visible and a viable tracer to study the thermodynamical proprieties of baryons undergoing accretion along cosmic web filaments onto galaxy clusters. We developed new algorithms to identify these structures and applied them to a set of non-radiative cosmological simulations of galaxy clusters at high resolution. We find that in those simulated clusters, the density and temperature of clumps are independent of the mass of the cluster where they reside. We detected a positive correlation between the filament temperature and the host cluster mass. The density and temperature of clumps and filaments also tended to correlate. Both the temperature and density decrease moving outward. We observed that clumps are hotter, more massive, and more luminous if identified closer to the cluster center. Especially in the outermost cluster regions (~3*R500,c or beyond), X-ray observations might already have the potential to locate cosmic filaments based on the distribution of clumps and to allow one to study the thermodynamics of diffuse baryons before they are processed by the intracluster medium.
Accepted to A&A; 19 pages, 25 figures
References in corpus (12)
- Scaling Properties of a Complete X-ray Selected Galaxy Group Sample
- The Population of Dark Matter Subhaloes: Mass Functions and Average Mass Loss Rates
- Detection of hot gas in the filament connecting the clusters of galaxies Abell 222 and Abell 223
- Resolved magnetic dynamo action in the simulated intracluster medium
- Turbulence and Vorticity in Galaxy Clusters Generated by Structure Formation
- Gas and galaxies in filament between clusters of galaxies: The study of A399-A401
- The Abell 3391/95 galaxy cluster system: A 15 Mpc intergalactic medium emission filament, a warm gas bridge, infalling matter clumps, and (re-) accelerated plasma discovered by combining SRG/eROSITA data with ASKAP/EMU and DECam data
- The O VI Absorbers Toward PG0953+415: High Metallicity, Cosmic-Web Gas Far From Luminous Galaxies
- Detecting shocked intergalactic gas with X-ray and radio observations
- Evolution of vorticity and enstrophy in the intracluster medium
- Suzaku Observations of the Outskirts of the Galaxy Cluster Abell 3395 including a Filament toward Abell 3391
- The Three Hundred Project: The gas disruption of infalling objects in cluster environments
Cited by in corpus (20)
- Exploring the spectral properties of radio relics I: Integrated spectral index and Mach number
- Gas distribution from clusters to filaments in IllustrisTNG
- The eROSITA view of the Abell 3391/95 field: a case study from the Magneticum cosmological simulation
- Exploring the relation between turbulent velocity and density fluctuations in the stratified intracluster medium
- Investigating the turbulent hot gas in X-COP galaxy clusters
- Gas clumping in the outskirts of the Virgo cluster
- Cosmic gas highways in C-EAGLE simulations
- Suzaku Observations of the Cluster Outskirts and Intercluster Filament in the Triple Merger Cluster Abell 98
- Soft X-ray emission from warm gas in IllustrisTNG circum-cluster environments
- Chandra measurements of gas homogeneity and turbulence at intermediate radii in the Perseus Cluster
- The warm-hot intergalactic medium in inter-cluster filaments -- A forecast for HUBS observations based on eRASS1 superclusters
- Cosmological simulations of the generation of cluster-scale radio emission from turbulent re-acceleration
- The SRG/eROSITA All-Sky Survey: Large-scale view of the Centaurus cluster
- The eventful life journey of galaxy clusters. I. Impact of DM halo and ICM properties on their full assembly histories
- Radio Observations as a Probe of Cosmic Web Magnetism
- Properties of the diffuse gas component in filaments detected in the Dianoga cosmological simulations
- The SRG/eROSITA All-Sky Survey. Detection of shock-heated gas beyond the halo boundary into the accretion region
- X-ray emission in IllustrisTNG circum-cluster environments. II -- Possible origins of the soft X-ray excess emission
- The eventful life journey of galaxy clusters. II. Impact of mass accretion on the thermodynamical structure of the ICM
- Ram-pressure stripping caught in action in a young cluster at