Investigating the velocity structure and X-ray observable properties of simulated galaxy clusters with PHOX
arXiv:1210.4158 · doi:10.1093/mnras/sts120
Abstract
Non-thermal motions in the intra-cluster medium (ICM) are believed to play a non-negligible role in the pressure support to the total gravitating mass of galaxy clusters. Future X-ray missions, such as ASTRO-H and ATHENA, will eventually allow us to directly detect the signature of these motions from high-resolution spectra of the ICM. In this paper, we present a study on a set of clusters extracted from a cosmological hydrodynamical simulation, devoted to explore the role of non-thermal velocity amplitude in characterising the cluster state and the relation between observed X-ray properties. In order to reach this goal, we apply the X-ray virtual telescope PHOX to generate synthetic observations of the simulated clusters with both Chandra and ATHENA, the latter used as an example for the performance of very high-resolution X-ray telescopes. From Chandra spectra we extract global properties, e.g. luminosity and temperature, and from ATHENA spectra we estimate the gas velocity dispersion along the line of sight from the broadening of heavy-ion emission lines (e.g. Fe). We further extend the analysis to the relation between non-thermal velocity dispersion of the gas and the L_X-T scaling law for the simulated clusters. Interestingly, we find a clear dependence of slope and scatter on the selection criterion for the clusters, based on the level of significance of non-thermal motions. Namely, the scatter in the relation is significantly reduced by the exclusion of the clusters, for which we estimate the highest turbulent velocities. Such velocity diagnostics appears therefore as a promising independent way to identify disturbed clusters, in addition to the commonly used morphological inspection.
17 pages, 15 figures, abstract abridged. Accepted for publication in MNRAS
References in corpus (4)
Cited by in corpus (86)
- On the nature of hydrostatic equilibrium in galaxy clusters
- Revisiting scaling relations for giant radio halos in galaxy clusters
- Weighing Galaxy Clusters with Gas. II. On the Origin of Hydrostatic Mass Bias in LambdaCDM Galaxy Clusters
- Simulating Groups and the IntraGroup Medium: The Surprisingly Complex and Rich Middle Ground Between Clusters and Galaxies
- A Deep Learning Approach to Galaxy Cluster X-ray Masses
- On the impact of baryons on the halo mass function, bias, and cluster cosmology
- SZE Observables, Pressure Profiles and Center Offsets in Magneticum Simulation Galaxy Clusters
- The Three Hundred Project: correcting for the hydrostatic-equilibrium mass bias in X-ray and SZ surveys
- Physical Origins of Gas Motions in Galaxy Cluster Cores: Interpreting Hitomi Observations of the Perseus Cluster
- The Effect of Anisotropic Viscosity on Cold Fronts in Galaxy Clusters
- How does our choice of observable influence our estimation of the centre of a galaxy cluster? Insights from cosmological simulations
- AGN contamination of galaxy-cluster thermal X-ray emission: predictions for eRosita from cosmological simulations
- Dependency of halo concentration on mass, redshift and fossilness in Magneticum hydrodynamic simulations
- Measuring turbulence and gas motions in galaxy clusters via synthetic Athena X-IFU observations
- 26Al kinematics: superbubbles following the spiral arms? Constraints from the statistics of star clusters and HI supershells
- Feedback from Reorienting AGN Jets
- Cosmological Fluid Mechanics with Adaptively Refined Large Eddy Simulations
- The MUSIC of Galaxy Clusters II: X-ray global properties and scaling relations
- Cosmology dependency of halo masses and concentrations in hydrodynamic simulations
- Characterizing hydrostatic mass bias with Mock-X
- Detecting shocked intergalactic gas with X-ray and radio observations
- What Do the Hitomi Observations Tell Us About the Turbulent Velocities in the Perseus Cluster? Probing the Velocity Field with Mock Observations
- Predicting Merger-Induced Gas Motions in Lambda-CDM Galaxy Clusters
- Athena X-IFU synthetic observations of galaxy clusters to probe the chemical enrichment of the Universe
- Offset between X-ray and optical centers in clusters of galaxies: connecting eROSITA data and simulations
- Properties of the ionized CGM and IGM: a comparison of galaxy formation models via the Sunyaev-Zel'dovich effect
- Kinetic Sunyaev--Zel'dovich effect in rotating galaxy clusters from MUSIC simulations
- The eROSITA view of the Abell 3391/95 field: a case study from the Magneticum cosmological simulation
- Using X-Ray Morphological Parameters to Strengthen Galaxy Cluster Mass Estimates via Machine Learning
- Persistent homology in cosmic shear II: A tomographic analysis of DES-Y1
- Simulating the LOcal Web (SLOW): I. Anomalies in the local density field
- Galaxy cluster mergers as triggers for the formation of jellyfish galaxies: case study of the A901/2 system
- Simulating Astro-H Observations of Sloshing Gas Motions in the Cores of Galaxy Clusters
- A deep learning view of the census of galaxy clusters in IllustrisTNG
- Mapping "out-of-the-box" the properties of the baryons in massive halos
- X-ray-inferred kinematics of the core ICM in Perseus-like clusters: Insights from the TNG-Cluster simulation
- Why Cosmic Voids Matter: Nonlinear Structure & Linear Dynamics
- SHAPing the Gas: Understanding Gas Shapes in Dark Matter Haloes with Interpretable Machine Learning
- Relative velocity of dark matter and barions in clusters of galaxies and measurements of their peculiar velocities
- On the redshift evolution of the baryon and gas fraction in simulated groups and clusters of galaxies
- Gas rotation in galaxy clusters: signatures and detectability in X-rays
- A disturbing FABLE of mergers, feedback, turbulence, and mass biases in simulated galaxy clusters
- Constraining hydrostatic mass bias of galaxy clusters with high-resolution X-ray spectroscopy
- Searching for bulk motions in the ICM of massive, merging clusters with Chandra CCD data
- Decomposition of galactic X-ray emission with Phox: Contributions from hot gas and XRBs
- X-ray Spectra of Circumgalactic Medium Around Star-Forming Galaxies: Connecting Simulations to Observations
- Impact of baryons in cosmic shear analyses with tomographic aperture mass statistics
- The role of the artificial conductivity in SPH simulations of galaxy clusters: effects on the ICM properties
- Detecting Galaxy Groups and AGNs populating the local Universe in the eROSITA era
- Simulations of the merging galaxy cluster Abell 2034: what determines the level of separation between gas and dark matter
- Effects of Multiphase Gas and Projection on X-ray Observables in Simulated Galaxy Clusters as Seen by eROSITA
- On the coherent rotation of diffuse matter in numerical simulations of galaxy clusters
- Simulation view of galaxy clusters with low X-ray surface brightness
- Simulations of gas sloshing induced by a newly discovered gas poor substructure in galaxy cluster Abell 1644
- Simulating the LOcal Web (SLOW) II: Properties of local galaxy clusters
- Benchmarks and Explanations for Deep Learning Estimates of X-ray Galaxy Cluster Masses
- Detecting clusters and groups of galaxies populating the local Universe in large optical spectroscopic surveys
- The magnetised and thermally unstable tails of jellyfish galaxies
- Hydrostatic Mass Profiles of Galaxy Clusters in the eROSITA Survey
- Halo Scaling Relations and Hydrostatic Mass Bias in the Simba Simulation From Realistic Mock X-ray Catalogues
- Simulating the galaxy cluster "El Gordo": gas motion, kinetic Sunyaev-Zel'dovich signal, and X-ray line features
- The Importance of Being Interpretable: Toward An Understandable Machine Learning Encoder for Galaxy Cluster Cosmology
- The impact of assembly history on the X-ray detectability of halos. From galaxy groups to galaxy clusters
- Average X-ray properties of galaxy groups. From Milky Way-like halos to massive clusters
- Quantifying Observational Projection Effects with a Simulation-based hot CGM model
- Testing the SZ-based tomographic approach to the thermal history of the universe with pressure-density cross-correlations: Insights from the Magneticum simulation
- The velocity structure of the intracluster medium during a major merger: simulated microcalorimeter observations
- Influence of adaptive mesh refinement and the hydro solver on shear-induced mass stripping in a minor-merger scenario
- How the cool-core population transitions from galaxy groups to massive clusters: A comparison of the largest Magneticum simulation with eROSITA, XMM-Newton, Chandra and LOFAR observations
- Correlation between centre offsets and gas velocity dispersion of galaxy clusters in cosmological simulations
- Radial X-ray profiles of simulated galaxies: Contributions from hot gas and XRBs
- The perils of stacking optically selected groups in eROSITA data. The Magneticum perspective
- Satellite galaxy abundance dependency on cosmology in Magneticum simulations
- Peculiar Velocity Estimation from Kinetic SZ Effect using Deep Neural Networks
- Cosmological Inference with Cosmic Voids and Neural Network Emulators
- A Machine Learning Approach to Enhancing eROSITA Observations
- Density Fluctuations in the Intracluster Medium: An Attempt to Constrain Viscosity with Cosmological Simulations
- The eROSITA view on the halo mass-temperature relation: From low-mass groups to massive clusters
- Retrieving the hot circumgalactic medium physics from the X-ray radial profile from eROSITA with an IlustrisTNG-based forward model
- A web portal for hydrodynamical, cosmological simulations
- Modelling the selection of galaxy groups with end to end simulations
- Average energy of the X-ray spectrum as a model-independent proxy for the mass of galaxy clusters
- Impact of the large-scale cosmic web on the X-ray emitting circumgalactic medium
- Bound or blown: the fate of hot gas in galaxy groups
- Predictions for the X-ray circumgalactic medium of edge-on discs and spheroids
- The eventful life journey of galaxy clusters. II. Impact of mass accretion on the thermodynamical structure of the ICM