Measuring galaxy cluster mass profiles into the low acceleration regime with galaxy kinematics
arXiv:2303.10175 · doi:10.1051/0004-6361/202346431
Abstract
We probe the dynamical mass profiles of 10 galaxy clusters from the HIghest X-ray FLUx Galaxy Cluster Sample (HIFLUGCS) using galaxy kinematics. We numerically solve the spherical Jeans equation, and parameterize the dynamical mass profile and the galaxy velocity anisotropy profile using two general functions to ensure that our results are not biased towards any specific model. The mass-velocity anisotropy degeneracy is ameliorated by using two "virial shape parameters" that depend on the fourth moment of velocity distribution. The resulting velocity anisotropy estimates consistently show a nearly isotropic distribution in the inner regions, with an increasing radial anisotropy towards large radii. We compare our derived dynamical masses with those calculated from X-ray gas data assuming hydrostatic equilibrium, finding that massive and rich relaxed clusters generally present consistent mass measurements, while unrelaxed or low-richness clusters have systematically larger total mass than hydrostatic mass by an average of 50\%. This might help alleviate current tensions in the measurement of , but it also leads to cluster baryon fractions below the cosmic value. Finally, our approach probes accelerations as low as m s, comparable to the outskirts of individual late-type galaxies. We confirm that galaxy clusters deviate from the radial acceleration relation defined by galaxies.
16 pages, 8 figures, 1 table. A&A accepted version
References in corpus (67)
- emcee: The MCMC Hammer
- Planck 2015 results. XIII. Cosmological parameters
- The SIMBAD astronomical database
- Chandra sample of nearby relaxed galaxy clusters: mass, gas fraction, and mass-temperature relation
- The Mass Function of an X-Ray Flux-Limited Sample of Galaxy Clusters
- Cluster Lensing And Supernova survey with Hubble (CLASH): An Overview
- KiDS-1000 Cosmology: Cosmic shear constraints and comparison between two point statistics
- The Atlas3D project - XV. Benchmark for early-type galaxies scaling relations from 260 dynamical models: mass-to-light ratio, dark matter, Fundamental Plane and Mass Plane
- Chandra Cluster Cosmology Project II: Samples and X-ray Data Reduction
- SPARC: Mass Models for 175 Disk Galaxies with Spitzer Photometry and Accurate Rotation Curves
- The Radial Acceleration Relation in Rotationally Supported Galaxies
- Testing X-ray Measurements of Galaxy Clusters with Cosmological Simulations
- Planck 2013 results. XXIX. Planck catalogue of Sunyaev-Zeldovich sources
- The Baryonic Tully-Fisher Relation of Galaxies with Extended Rotation Curves and the Stellar Mass of Rotating Galaxies
- A New Robust Low-Scatter X-ray Mass Indicator for Clusters of Galaxies
- Residual Gas Motions in the Intracluster Medium and Bias in Hydrostatic Measurements of Mass Profiles of Clusters
- One Law To Rule Them All: The Radial Acceleration Relation of Galaxies
- Dark matter cores all the way down
- Dark matter in elliptical galaxies: II. Estimating the mass within the virial radius
- Mass estimation in the outer regions of galaxy clusters
- Evidence for X-ray emission from a large-scale filament of galaxies ?
- The small scatter of the baryonic Tully-Fisher relation
- The Eighteenth Data Release of the Sloan Digital Sky Surveys: Targeting and First Spectra from SDSS-V
- Statistics of X-ray observables for the cooling-core and non-cooling core galaxy clusters
- Theory of Dark Matter Superfluidity
- On the efficiency and reliability of cluster mass estimates based on member galaxies
- Clusters of galaxies with modified Newtonian dynamics (MOND)
- CLASH: Joint Analysis of Strong-Lensing, Weak-Lensing Shear and Magnification Data for 20 Galaxy Clusters
- Universal thermodynamic properties of the intracluster medium over two decades in radius in the X-COP sample
- Non-thermal pressure support in X-COP galaxy clusters
- CLASH-VLT: The mass, velocity-anisotropy, and pseudo-phase-space density profiles of the z=0.44 galaxy cluster MACS 1206.2-0847
- The importance of tides for the Local Group dwarf spheroidals
- Four Measures of the Intracluster Medium Temperature and Their Relation to a Cluster's Dynamical State
- Hydrodynamic Simulation of Non-thermal Pressure Profiles of Galaxy Clusters
- Fitting the radial acceleration relation to individual SPARC galaxies
- Hydrostatic mass profiles in X-COP galaxy clusters
- WINGS-SPE Spectroscopy in the WIde-field Nearby Galaxy-cluster Survey
- Effect of environment on galaxies mass-size distribution: unveiling the transition from outside-in to inside-out evolution
- HIFLUGCS: Galaxy cluster scaling relations between X-ray luminosity, gas mass, cluster radius, and velocity dispersion
- The case for a cold dark matter cusp in Draco
- Velocity dispersion around ellipticals in MOND
- X-ray Group and cluster mass profiles in MOND: Unexplained mass on the group scale
- Baryon Content in a Sample of 91 Galaxy Clusters Selected by the South Pole Telescope at 0.2 < z < 1.25
- An Alternative to Particle Dark Matter
- The extended ROSAT-ESO Flux Limited X-ray Galaxy Cluster Survey (REFLEX II) IV. X-ray Luminosity Function and First Constraints on Cosmological Parameters
- How to break the density-anisotropy degeneracy in spherical stellar systems
- Minor merger-induced cold fronts in Abell 2142 and RXJ1720.1+2638
- The Radial Acceleration Relation in CLASH Galaxy Clusters
- The Velocity Dispersion Function of Very Massive Galaxy Clusters: Abell 2029 and Coma
- The abundance of galaxy clusters in MOND: Cosmological simulations with massive neutrinos
- Andromeda XXI -- a dwarf galaxy in a low density dark matter halo
- To beta or not to beta: can higher-order Jeans analysis break the mass-anisotropy degeneracy in simulated dwarfs?
- Breaking Beta: A comparison of mass modelling methods for spherical systems
- Testing Verlinde's Emergent Gravity with the Radial Acceleration Relation
- Substructure and Scatter in the Mass-Temperature Relations of Simulated Clusters
- The gravitational field of X-COP galaxy clusters
- Generalizing MOND to explain the missing mass in galaxy clusters
- Unifying all mass discrepancies with one effective gravity law?
- Stellar Mass-to-light Ratios: Composite Bulge+Disk Models and the Baryonic Tully-Fisher Relation
- Milking the spherical cow: on aspherical dynamics in spherical coordinates
- Ultra-diffuse cluster galaxies as key to the MOND cluster conundrum
- X-ray analysis of JWST's first galaxy cluster lens SMACS J0723.3-7327
- From spirals to lenticulars: evidence from the rotation curves and mass models of three early-type galaxies
- Comparison of hydrostatic and dynamical masses of distant X-ray luminous galaxy clusters
- Closing up the cluster tension?
- Dynamical analysis of clusters of galaxies from cosmological simulations
- Mass-Velocity Dispersion Relation in HIFLUGCS Galaxy Clusters
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- Strong constraints on the gravitational law from DR3 wide binaries
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- A Distinct Radial Acceleration Relation across Brightest Cluster Galaxies and Galaxy Clusters
- GravSphere2: A higher-order Jeans method for mass-modeling spherical stellar systems
- Buchdahl bound, photon ring, ISCO and radial acceleration in Einstein-æther theory
- CLASH-VLT: The variance in the velocity anisotropy profiles of galaxy clusters
- Hydrostatic mass of galaxy clusters within some theories of gravity
- The radial acceleration relation at the EDGE of galaxy formation: testing its universality in low-mass dwarf galaxies
- The p-Laplacian as a Framework for Generalizing Newtonian Gravity and MoND
- Measuring Mass of Gas in Central Galaxies using weak lensing and satellite kinematics in MOND
- Gas thermodynamics meets galaxy kinematics: Joint mass measurements for eROSITA galaxy clusters
- A comparative test of different pressure profile models in clusters of galaxies using recent ACT data
- Hydrostatic equilibrium of X-ray gas in X-COP clusters with HMG
- Distribution functions for spheroids
- Distinct radial acceleration relations of galaxies and galaxy clusters supports hyperconical modified gravity