On the choice of the most suitable indicator for the assembly state of dark matter haloes through cosmic time
arXiv:2301.02253 · doi:10.1093/mnras/stad059
Abstract
The dynamical state and morphological features of galaxies and galaxy clusters, and their high-redshift precursors, are tightly connected with their assembly history, encoding crucial information about the formation and evolution of such cosmic structures. As a first step towards finding an optimal indicator of the assembly state of observed structures, we use a cosmological simulation of a moderate volume to critically examine the best definition of an indicator that is able to discriminate dark matter haloes undergoing mergers and/or strong accretion from haloes experimenting a relaxed evolution. Using a combination of centre offset, virial ratio, mean radial velocity, sparsity and ellipticity of the dark matter halo, we study how the thresholds on these parameters, as well as their relative weights, should evolve with redshift to provide the best classification possible. This allows us to split a sample of haloes in a totally relaxed, a marginally relaxed and an unrelaxed subsamples. The resulting classification strongly correlates with the merging activity obtained from the analysis of complete merger trees extracted from whole simulation data. The results on how the different indicators depend on redshift and halo mass, and their optimal combination to better match the true assembly history of haloes, could constitute relevant hints to find a suitable set of indicators applicable to observational data.
15 pages, 10 figures; accepted for publication in MNRAS
References in corpus (36)
- Array Programming with NumPy
- Rotation-Dependent Catastrophic Disruption of Gravitational Aggregates
- The impact of mergers on relaxed X-ray clusters - I. Dynamical evolution and emergent transient structures
- The CAMELS project: Cosmology and Astrophysics with MachinE Learning Simulations
- Large-scale dark matter simulations
- Turbulence and Vorticity in Galaxy Clusters Generated by Structure Formation
- Pressure of the hot gas in simulations of galaxy clusters
- The Three Hundred Project: Backsplash galaxies in simulations of clusters
- Simulating Subhalos at High Redshift: Merger Rates, Counts, and Types
- The Three Hundred Project: Dynamical state of galaxy clusters and morphology from multi-wavelength synthetic maps
- Do Mergers Spin up Dark Matter Halos?
- Concentrations of Dark Haloes Emerge from Their Merger Histories
- Mapping and characterisation of cosmic filaments in galaxy cluster outskirts: strategies and forecasts for observations from simulations
- An inventory of galaxies in cosmic filaments feeding galaxy clusters: galaxy groups, backsplash galaxies, and pristine galaxies
- On the Correlation between Spin Parameter and Halo Mass
- Large-Scale Structure Formation: from the first non-linear objects to massive galaxy clusters
- Correlations between Triaxial Shapes and Formation History of Dark Matter Haloes
- Dynamical state of galaxy clusters evaluated from X-ray images
- The Three Hundred Project: quest of clusters of galaxies morphology and dynamical state through Zernike Polynomials
- Gas distribution from clusters to filaments in IllustrisTNG
- The eROSITA Final Equatorial-Depth Survey (eFEDS): Characterization of Morphological Properties of Galaxy Groups and Clusters
- On the accretion history of galaxy clusters: temporal and spatial distribution
- The mass function dependence on the dynamical state of dark matter haloes
- Exploring the relation between turbulent velocity and density fluctuations in the stratified intracluster medium
- A multifiltering study of turbulence in a large sample of simulated galaxy clusters
- The Three Hundred: Cluster Dynamical States and Relaxation Time Scale
- Troubled cosmic flows: turbulence, enstrophy and helicity from the assembly history of the intracluster medium
- A disturbing FABLE of mergers, feedback, turbulence, and mass biases in simulated galaxy clusters
- Evolution of Splashback Boundaries and Gaseous Outskirts: Insights from Mergers of Self-similar Galaxy Clusters
- Comparing different mass estimators for a large subsample of the {\it Planck}-ESZ clusters
- Triaxial vs. Spherical Dark Matter Halo Profiles
- Cosmic magnetic fields with MASCLET: an application to galaxy clusters
- Average Dark Matter Halo Sparsity Relations as Consistency Check of Mass Estimates in Galaxy Cluster Samples
- The Spanish Square Kilometre Array White Book
- Unravelling cosmic velocity flows: a Helmholtz-Hodge decomposition algorithm for cosmological simulations
- Timing the last major merger of galaxy clusters with large halo sparsity
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- MultiCAM: A multivariable framework for connecting the mass accretion history of haloes with their properties
- Cosmic accretion shocks as a tool to measure the dark matter mass of galaxy clusters
- New observational recipes for measuring dynamical state of galaxy clusters
- The eventful life journey of galaxy clusters. I. Impact of DM halo and ICM properties on their full assembly histories
- The imprints of galaxy cluster internal dynamics on the Sunyaev-Zeldovich effect
- The signature of major mergers on the hydrostatic mass bias of galaxy clusters
- The eventful life journey of galaxy clusters. II. Impact of mass accretion on the thermodynamical structure of the ICM