Non-parametric method for measuring gas inhomogeneities from X-ray observations of galaxy clusters
arXiv:1305.5256 · doi:10.1093/mnras/stt1636
Abstract
We present a non-parametric method to measure inhomogeneities in the intracluster medium (ICM) from X-ray observations of galaxy clusters. Analysing mock Chandra X-ray observations of simulated clusters, we show that our new method enables the accurate recovery of the 3D gas density and gas clumping factor profiles out to large radii of galaxy clusters. We then apply this method to Chandra X-ray observations of Abell 1835 and present the first determination of the gas clumping factor from the X-ray cluster data. We find that the gas clumping factor in Abell 1835 increases with radius and reaches ~2-3 at r=R_{200}. This is in good agreement with the predictions of hydrodynamical simulations, but it is significantly below the values inferred from recent Suzaku observations. We further show that the radially increasing gas clumping factor causes flattening of the derived entropy profile of the ICM and affects physical interpretation of the cluster gas structure, especially at the large cluster-centric radii. Our new technique should be useful for improving our understanding of the cluster structure and to advance the use of galaxy clusters as cosmological probes, by helping to exploit rich data sets provided by Chandra and XMM-Newton X-ray space telescopes.
MNRAS in press
References in corpus (10)
- Testing X-ray Measurements of Galaxy Clusters with Cosmological Simulations
- Effects of Baryons and Dissipation on the Matter Power Spectrum
- Baryons at the Edge of the X-ray Brightest Galaxy Cluster
- X-ray observations of the galaxy cluster PKS 0745-191: To the virial radius, and beyond
- Large-scale inhomogeneities of the intracluster medium: improving mass estimates using the observed azimuthal scatter
- The X-ray/SZ view of the virial region. I. Thermodynamic properties
- X-ray and Sunyaev-Zel'dovich scaling relations in galaxy clusters
- Bias from gas inhomogeneities in the pressure profiles as measured from X-ray and SZ observations
- Entropy profiles in X-ray luminous galaxy clusters at z>0.1
- Turbulence in the SuperModel: Mass Reconstruction with Nonthermal Pressure for Abell 1835
Cited by in corpus (15)
- The galaxy cluster mass scale and its impact on cosmological constraints from the cluster population
- The Physics of Galaxy Cluster Outskirts
- Testing chameleon gravity with the Coma cluster
- Gas clumping in galaxy clusters
- Pressure of the hot gas in simulations of galaxy clusters
- The Tau of Galaxy Clusters
- The Three Hundred Project: correcting for the hydrostatic-equilibrium mass bias in X-ray and SZ surveys
- The XMM Cluster Outskirts Project (X-COP): Physical conditions to the virial radius of Abell 2142
- The Three Hundred Project: quest of clusters of galaxies morphology and dynamical state through Zernike Polynomials
- The galaxy cluster outskirts probed by Chandra
- Galaxy Cluster Pressure Profiles as Determined by Sunyaev Zel'dovich Effect Observations with MUSTANG and Bolocam II: Joint Analysis of Fourteen Clusters
- Deriving the Hubble constant using Planck and XMM-Newton observations of galaxy clusters
- Adaptive mesh refinement simulations of a galaxy cluster merger - I. Resolving and modelling the turbulent flow in the cluster outskirts
- Probing dark energy via galaxy cluster outskirts
- Gas clumping and its effect on hydrostatic bias in the MACSIS simulations