What to expect from dynamical modelling of cluster haloes I. The information content of different dynamical tracers
arXiv:2106.03011 · doi:10.1093/mnras/stab1633
Abstract
Using hydrodynamical simulations, we study how well the underlying gravitational potential of a galaxy cluster can be modelled dynamically with different types of tracers. In order to segregate different systematics and the effects of varying estimator performances, we first focus on applying a generic minimal assumption method (oPDF) to model the simulated haloes using the full 6-D phasespace information. We show that the halo mass and concentration can be recovered in an ensemble unbiased way, with a stochastic bias that varies from halo to halo, mostly reflecting deviations from steady state in the tracer distribution. The typical systematic uncertainty is dex in the virial mass and dex in the concentration as well when dark matter particles are used as tracers. The dynamical state of satellite galaxies are close to that of dark matter particles, while intracluster stars are less in a steady state, resulting in a 0.26 dex systematic uncertainty in mass. Compared with galactic haloes hosting Milky-Way-like galaxies, cluster haloes show a larger stochastic bias in the recovered mass profiles. We also test the accuracy of using intracluster gas as a dynamical tracer modelled through a generalised hydrostatic equilibrium equation, and find a comparable systematic uncertainty in the estimated mass to that using dark matter. Lastly, we demonstrate that our conclusions are largely applicable to other steady-state dynamical models including the spherical Jeans equation, by quantitatively segregating their statistical efficiencies and robustness to systematics. We also estimate the limiting number of tracers that leads to the systematics-dominated regime in each case.
16 pages, 13 figures, accepted for publication in MNRAS
References in corpus (30)
- The NumPy array: a structure for efficient numerical computation
- The effect of photo-ionization on the cooling rates of enriched, astrophysical plasmas
- Baryon effects on the internal structure of LCDM halos in the EAGLE simulations
- Chemical enrichment of galaxy clusters from hydrodynamical simulations
- Systematics in the X-ray Cluster Mass Estimators
- On the efficiency and reliability of cluster mass estimates based on member galaxies
- A refined sub-grid model for black hole accretion and AGN feedback in large cosmological simulations
- Hydrodynamic Simulation of Non-thermal Pressure Profiles of Galaxy Clusters
- HBT+: an improved code for finding subhalos and building merger trees in cosmological simulations
- The impact of baryons on massive galaxy clusters: halo structure and cluster mass estimates
- The Three Hundred Project: Backsplash galaxies in simulations of clusters
- Galaxy Cluster Mass Reconstruction Project: II. Quantifying scatter and bias using contrasting mock catalogues
- Galaxy Cluster Mass Reconstruction Project: I. Methods and first results on galaxy-based techniques
- Galaxy and Mass Assembly (GAMA): The halo mass of galaxy groups from maximum-likelihood weak lensing
- The Three Hundred Project: Dynamical state of galaxy clusters and morphology from multi-wavelength synthetic maps
- Mapping and characterisation of cosmic filaments in galaxy cluster outskirts: strategies and forecasts for observations from simulations
- The Three Hundred Project: correcting for the hydrostatic-equilibrium mass bias in X-ray and SZ surveys
- The ThreeHundred: the structure and properties of cosmic filaments in the outskirts of galaxy clusters
- The Three Hundred Project: Ram pressure and gas content of haloes and subhaloes in the phase-space plane
- The Cluster-EAGLE project: velocity bias and the velocity dispersion - mass relation of cluster galaxies
- The Three Hundred project: shapes and radial alignment of satellite, infalling, and backsplash galaxies
- Galaxy Cluster Mass Reconstruction Project: III. The impact of dynamical substructure on cluster mass estimates
- Stellar splashback: the edge of the intracluster light
- Cosmic filaments in galaxy cluster outskirts: quantifying finding filaments in redshift space
- Shocks in the Stacked Sunyaev-Zel'dovich Profiles of Clusters I: Analysis with the Three Hundred Simulations
- The Three Hundred Project: the stellar and gas profiles
- Galaxy And Mass Assembly: Estimating galaxy group masses via caustic analysis
- Comparison of hydrostatic and dynamical masses of distant X-ray luminous galaxy clusters
- A Versatile and Accurate Method for Halo Mass Determination from Phase-Space Distribution of Satellite Galaxies
- Shape and connectivity of groups and clusters: Impact of dynamical state and accretion history
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- What to expect from dynamical modelling of cluster haloes II. Investigating dynamical state indicators with Random Forest
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- Halo Properties and Mass Functions of Groups/Clusters from the DESI Legacy Imaging Surveys DR9
- Physical evolution of dark matter halo around the depletion boundary
- The Three Hundred Project: the evolution of physical baryon profiles
- Is the core-cusp problem a matter of perspective: Jeans Anisotropic Modeling against numerical simulations
- The infall region as a complementary probe to cluster abundance
- Intrinsic mass-richness relation of clusters from THE THREE HUNDRED hydrodynamic simulations
- Identifying Galaxy Cluster Mergers with Deep Neural Networks using Idealized Compton-y and X-ray maps
- Prospects for studying the mass and gas in protoclusters with future CMB observations
- Deep Learning generated observations of galaxy clusters from dark-matter-only simulations