The relationship between substructure in 2D X-ray surface brightness images and weak lensing mass maps of galaxy clusters: A simulation study
arXiv:0908.3201 · doi:10.1111/j.1365-2966.2009.15526.x
Abstract
In this paper, we undertake a study to determine what insight can be reliably gleaned from the comparison of the X-ray and the weak lensing mass maps of galaxy clusters. We do this by investigating the 2D substructure within three high-resolution cosmological simulations of galaxy clusters. Our main results focus on non-radiative gas dynamics, but we also consider the effects of radiative cooling at high redshift. For our analysis, we use a novel approach, based on unsharp-masking, to identify substructures in 2D surface mass density and X-ray surface brightness maps. At full resolution (~ 15 h^-1 kpc), this technique is capable of identifying almost all self-bound dark matter subhaloes with M>10^12 h^-1 M_sun. We also report a correlation between the mass of a subhalo and the area of its corresponding 2D detection; such a correlation, once calibrated, could provide a useful estimator for substructure mass. Comparing our 2D mass and X-ray substructures, we find a surprising number of cases where the matching fails: around one third of galaxy-sized substructures have no X-ray counterpart. Some interesting cases are also found at larger masses, in particular the cores of merging clusters where the situation can be complex. Finally, we degrade our mass maps to what is currently achievable with weak-lensing observations (~100 h^-1 kpc at z=0.2). While the completeness mass limit increases by around an order of magnitude, a mass-area correlation remains. Our paper clearly demonstrates that the next generation of lensing surveys should start to reveal a wealth of information on cluster substructure. (Abridged)
30 pages, 27 figures, 3 tables. Accepted for publication in MNRAS. High resolution version available at http://www.physics.ox.ac.uk/users/powell/clustersubs_highres.pdf
References in corpus (19)
- Modelling discontinuities and Kelvin-Helmholtz instabilities in SPH
- Ram pressure stripping the hot gaseous halos of galaxies in groups and clusters
- The origin of cold fronts in the cores of relaxed galaxy clusters
- The impact of mergers on relaxed X-ray clusters - I. Dynamical evolution and emergent transient structures
- Revealing the properties of dark matter in the merging cluster MACSJ0025.4-1222
- The speed of the `bullet' in the merging galaxy cluster 1E0657-56
- The Unorthodox Orbits of Substructure Halos
- A Dark Core in Abell 520
- X-ray thermal coronae of galaxies in hot clusters -- ubiquity of embedded mini cooling cores
- The impact of mergers on relaxed X-ray clusters - II. Effects on global X-ray and SZ properties and their scaling relations
- Simulating the Bullet Cluster
- Towards a Holistic View of the Heating and Cooling of the Intracluster Medium
- The dark matter environment of the Abell 901/902 supercluster: a weak lensing analysis of the HST STAGES survey
- The impact of mergers on relaxed X-ray clusters - III. Effects on compact cool cores
- The evolution of clusters in the CLEF cosmological simulation: X-ray structural and scaling properties
- The radial alignment of dark matter subhalos: from simulations to observations
- The Sunyaev-Zel'dovich temperature of the intracluster medium
- Probing the dynamical state of galaxy clusters
- An approximate theory for substructure propagation in clusters
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- On the cross-section of Dark Matter using substructure infall into galaxy clusters
- Cluster Bulleticity
- Dark Matter Astrometry: Accuracy of sub-halo positions for the measurement of self-interaction cross sections
- More relaxed intracluster gas than galaxies in clusters in quasi-equilibrium