The effect of radiative cooling on the X-ray properties of galaxy clusters
arXiv:astro-ph/9908062 · doi:10.1046/j.1365-8711.2000.03773.x
Abstract
In this paper, we investigate the effect of cooling on the X-ray properties of galaxy clusters. We have performed N-body, hydrodynamical simulations both with and without the effects of radiative cooling, but neglecting the effects of star formation and feedback. We show that radiative cooling produces an inflow of high-entropy gas from the outer parts of the cluster, thus \emph{raising} the cluster temperature and \emph{decreasing} the X-ray luminosity. With radiative cooling clusters are on average three to five times less luminous in X-rays than the same cluster simulated without cooling. However, we do not produce a large constant-density core in either the gas or the dark matter distributions. Our results contradict previous work in which cooling raises the X-ray luminosity and deposits an unreasonably large amount of mass in the central cluster galaxy. We achieve this by selecting our numerical resolution in such a way that a reasonable fraction of the baryonic material cools and by decoupling the hot and cold gas in our simulations, a first step towards modelling multiphase gas. We emphasise that globally cooling a sensible amount of material is vital and the presence or absence of massive central concentrations of cold baryonic material has a dramatic effect upon the resultant X-ray properties of the clusters.
14 pages, accepted to MNRAS, substantially revised from previous version
References in corpus (3)
Cited by in corpus (113)
- Galaxy Groups in the SDSS DR4: I. The Catalogue and Basic Properties
- Response of dark matter halos to condensation of baryons: cosmological simulations and improved adiabatic contraction model
- Tracing cosmic evolution with clusters of galaxies
- Effects of Galaxy Formation on Thermodynamics of the Intracluster Medium
- Constraining Galaxy Formation and Cosmology with the Conditional Luminosity Function of Galaxies
- The Evolution of X-ray Clusters of Galaxies
- The Evolution of X-ray Clusters and the Entropy of the Intra Cluster Medium
- A Halo-Based Galaxy Group Finder: Calibration and Application to the 2dFGRS
- Effects of Baryons and Dissipation on the Matter Power Spectrum
- Gas entropy in a representative sample of nearby X-ray galaxy clusters (REXCESS): relationship to gas mass fraction
- The Birmingham-CfA cluster scaling project - III: entropy and similarity in galaxy systems
- The X-ray virial relations for relaxed lensing clusters observed with Chandra
- A dynamical model for the distribution of dark matter and gas in galaxy clusters
- Revisiting the Cosmic Cooling Crisis
- Linking Early and Late Type Galaxies to their Dark Matter Haloes
- The Representative XMM-Newton Cluster Structure Survey (REXCESS) of an X-ray Luminosity Selected Galaxy Cluster Sample
- On the Cluster Physics of Sunyaev-Zel'dovich Surveys I: The Influence of Feedback, Non-thermal Pressure and Cluster Shapes on Y-M Scaling Relations
- Effects of cooling and star formation on the baryon fractions in clusters
- Universal gas density and temperature profile
- Total mass biases in X-ray galaxy clusters
- Modified-Entropy Models for the Intracluster Medium
- Regulation of the X-ray luminosity of clusters of galaxies by cooling and supernova feedback
- LoCuSS: Comparison of Observed X-ray and Lensing Galaxy Cluster Scaling Relations with Simulations
- Bubbles, feedback and the intra-cluster medium: three-dimensional hydrodynamic simulations
- Physical Implications of the X-ray Properties of Galaxy Groups and Clusters
- Cosmological constraints from the local X-ray luminosity function of the most X-ray luminous galaxy clusters
- Explaining the entropy excess in clusters and groups of galaxies without additional heating
- Cosmic Ray Protons Accelerated at Cosmological Shocks and Their Impact on Groups and Clusters of Galaxies
- The Effect of Cooling and Preheating on the X-ray Properties of Clusters of Galaxies
- Hydrodynamical simulations of the Sunyaev-Zel'dovich effect: cluster scaling relations and X-ray properties
- The effect of non--gravitational gas heating in groups and clusters of galaxies
- Including star formation and supernova feedback within cosmological simulations of galaxy formation
- The effect of radiative cooling on scaling laws of X-ray groups and clusters
- Hydrodynamic simulations of merging clusters of galaxies
- Chandra observations of the galaxy cluster Abell 1835
- XMM-Newton observation of the distant (z=0.6) galaxy cluster RX J1120.1+4318
- The dynamical state of brightest cluster galaxies and the formation of clusters
- The Impact of Galaxy Formation on the X-ray Evolution of Clusters
- Structure and scaling of the entropy in nearby galaxy clusters
- The Impact of Cooling and Feedback on Disc Galaxies
- X-ray properties in massive galaxy clusters: XMM-Newton observations of the REFLEX-DXL sample
- Simulations of galaxy formation in a cosmological volume
- Pre-heating the ICM in high resolution simulations: the effect on the gas entropy
- X-Ray Scaling Relations of Galaxy Groups in a Hydrodynamic Cosmological Simulation
- An HST Lensing Survey of X-ray Luminous Galaxy Clusters: I. A383
- Hydrodynamic Simulation of the Cosmological X-ray Background
- Reconstructing the cosmic density field with the distribution of dark matter halos
- XMM-Newton observations of three poor clusters: Similarity in dark matter and entropy profiles down to low mass
- A uniform X-ray analysis of 79 distant galaxy clusters with ROSAT and ASCA
- nIFTy galaxy cluster simulations I: dark matter & non-radiative models
- Self Calibration of Tomographic Weak Lensing for the Physics of Baryons to Constrain Dark Energy
- Iron abundances and heating of the ICM in hydrodynamical simulations of galaxy clusters
- Scaling relations and mass calibration of the X-ray luminous galaxy clusters at z~0.2: XMM-Newton observations
- The evolution of clusters in the CLEF cosmological simulation: X-ray structural and scaling properties
- The radial structure of galaxy groups and clusters
- Formation of Cool Cores in Galaxy Clusters via Hierarchical Mergers
- Hot and Cooled baryons in SPH simulations of galaxy clusters: physics and numerics
- Quasars: What turns them off?
- High-Redshift Galaxy Outflows and the Formation of Dwarf Galaxies
- Multi-wavelength Cosmological Simulations of Elliptical Galaxies
- The X-ray surface brightness profiles of hot galaxy clusters up to z~0.8: evidence for self-similarity and constraints on Omega_0
- How AGN feedback and metal cooling shape cluster entropy profiles
- The impact of cooling and pre-heating on the Sunyaev-Zel'dovich effect
- nIFTy galaxy cluster simulations II: radiative models
- The Three Hundred Project: The evolution of galaxy cluster density profiles
- The evolution of galaxy cluster X-ray scaling relations
- Cosmological simulations of galaxy clusters with feedback from active galactic nuclei: profiles and scaling relations
- Violence in the Dark Ages
- A simluated TCDM cosmology cluster catalogue: the NFW profile and the temperature-mass scaling relations
- The influence of baryons on the mass distribution of dark matter halos
- Numerical Simulations of High Redshift Star Formation in Dwarf Galaxies
- Simulating galaxy clusters -- I. Thermal and chemical properties of the intra-cluster medium
- Large-Scale Structure Formation: from the first non-linear objects to massive galaxy clusters
- Self-Regulated AGN Heating in Elliptical Galaxies
- The X-ray Luminosity - Velocity Dispersion relation in the REFLEX Cluster Survey
- The impact of galaxy formation on X-ray groups
- The Impact of Halo Properties, Energy Feedback and Projection Effects on the Mass-SZ Flux Relation
- X-ray Properties of Intermediate-Redshift Groups of Galaxies
- Properties of the diffuse X-ray background in a high-resolution hydrodynamical simulation
- X-ray bright groups and their galaxies
- Nature versus Nurture: The curved spine of the galaxy cluster X-ray luminosity -- temperature relation
- The entropy distribution in clusters: evidence of feedback?
- The Effect of radiative cooling on the scale-dependence of global stellar and gas contents of groups and clusters of galaxies
- Can simulations reproduce the observed temperature-mass relation for clusters of galaxies?
- Galaxy cluster mergers
- Statistics of Sunyaev-Zel'dovich Cluster Surveys
- The Cosmological Simulation Code OpenGadget3 -- Implementation of Meshless Finite Mass
- The Cluster Gas Mass - Temperature Relation: Evidence for a High Level of Preheating
- Cluster scaling relations from cosmological hydrodynamic simulations in dark energy dominated universe
- Simulation of Soft X-ray Emission Lines from the Missing Baryons
- Evolution of X-ray cluster scaling relations in simulations with radiative cooling and non-gravitational heating
- Combining Semi-analytic Models with Simulations of Galaxy Clusters: the Need for Heating from Active Galactic Nuclei
- Modeling Galaxy-Galaxy Weak Lensing with SDSS Groups
- Sunyaev-Zel'dovich Predictions for the Planck Surveyor Satellite using the Hubble Volume Simulations
- The entropy core in galaxy clusters: numerical and physical effects in cosmological grid simulations
- The Influence of Galaxy Formation Physics on Weak Lensing Tests of General Relativity
- Numerical convergence of physical variables in hydrodynamical simulations of cooling clusters
- X-ray temperature spectroscopy of simulated cooling clusters
- nIFTy galaxy cluster simulations V: Investigation of the Cluster Infall Region
- EAGLE-like simulation models do not solve the entropy core problem in groups and clusters of galaxies
- The Effect of Radiative Cooling on the Sunyaev-Zel'dovich Cluster Counts and Angular Power Spectrum: Analytic Treatment
- Effects of Preheated Clusters on the CMB Spectrum
- Suppression of Bremsstrahlung losses from relativistic plasma with energy cutoff
- nIFTy Galaxy Cluster simulations VI: The dynamical imprint of substructure on gaseous cluster outskirts
- The impact of dust on the scaling properties of galaxy clusters
- Implications of the Universal Temperature Profile for Galaxy Clusters
- Structure of the super-Eddington outflow and itsimpact on the cosmological scale
- The Growth of Baryonic Structure in the Presence of Cosmological Magnetic Pressure
- Multicolor Photometry of the Nearby Galaxy Cluster A119
- Effect of Priomordial non-Gaussianities on Galaxy Clusters Scaling Relations
- Citation measures and impact within astronomy
- Hydrostatic equilibrium of a porous intracluster medium: implications for mass fraction and X-ray luminosity
- Scaling Relation to Understand Non-Detection of Cold Gas at the Cluster Center