X-ray Substructure Studies of Four Galaxy Clusters using XMM-Newton Data
arXiv:0904.3655 · doi:10.1088/0004-637X/699/2/1178
Abstract
Mahdavi et al. find that the degree of agreement between weak lensing and X-ray mass measurements is a function of cluster radius. Numerical simulations also point out that X-ray mass proxies do not work equally well at all radii. The origin of the effect is thought to be associated with cluster mergers. Recent work presenting the cluster maps showed an ability of X-ray maps to reveal and study cluster mergers in detail. Here we present a first attempt to use the study of substructure in assessing the systematics of the hydrostatic mass measurements using two-dimensional (2-D) X-ray diagnostics. The temperature map is uniquely able to identify the substructure in an almost relaxed cluster which would be unnoticed in the ICM electron number density and pressure maps. We describe the radial fluctuations in the 2-D maps by a cumulative/differential scatter profile relative to the mean profile within/at a given radius. The amplitude indicates ~10 fluctuations in the temperature, electron number density and entropy maps, and ~15 fluctuations in the pressure map. The amplitude of and the discontinuity in the scatter complement 2-D substructure diagnostics, e.g. indicating the most disturbed radial range. There is a tantalizing link between the substructure identified using the scatter of the entropy and pressure fluctuations and the hydrostatic mass bias relative to the expected mass based on the M-Yx and M-Mgas relations particularly at r500. XMM-Newton observations with ~120,000 source photons from the cluster are sufficient to apply our substructure diagnostics via the spectrally measured 2-D temperature, electron number density, entropy and pressure maps.
44 pages, 16 figures, 3 tables, including some language editing from ApJ, published in ApJ
References in corpus (24)
- A Catalog of Galaxy Clusters Observed by XMM-Newton
- Virial Scaling of Massive Dark Matter Halos: Why Clusters Prefer a High Normalization Cosmology
- The impact of mergers on relaxed X-ray clusters - I. Dynamical evolution and emergent transient structures
- The Representative XMM-Newton Cluster Structure Survey (REXCESS) of an X-ray Luminosity Selected Galaxy Cluster Sample
- A deeper X-ray study of the core of the Perseus galaxy cluster: the power of sound waves and the distribution of metals and cosmic rays
- Contour binning: a new technique for spatially-resolved X-ray spectroscopy applied to Cassiopeia A
- Calibration of the galaxy cluster M_500-Y_X relation with XMM-Newton
- Total mass biases in X-ray galaxy clusters
- LoCuSS: Comparison of Observed X-ray and Lensing Galaxy Cluster Scaling Relations with Simulations
- Evidence for Non-Hydrostatic Gas from the Cluster X-ray to Lensing Mass Ratio
- The impact of mergers on relaxed X-ray clusters - II. Effects on global X-ray and SZ properties and their scaling relations
- X-ray properties in massive galaxy clusters: XMM-Newton observations of the REFLEX-DXL sample
- Chemical evolution in Sersic 159-03 observed with XMM-Newton
- Physical viscosity in smoothed particle hydrodynamics simulations of galaxy clusters
- Scaling relations and mass calibration of the X-ray luminous galaxy clusters at z~0.2: XMM-Newton observations
- On the influence of ram-pressure stripping on interacting galaxies in clusters
- An XMM-Newton observation of the dynamically active binary cluster A1750
- Substructure and Scatter in the Mass-Temperature Relations of Simulated Clusters
- XMM-Newton study of the lensing cluster of galaxies CL0024+17
- The gaseous atmosphere of M87 seen with XMM-Newton
- Connecting Cluster Substructure in Galaxy Cluster Cores at z=0.2 With Cluster Assembly Histories
- The scalar perturbation spectral index n_s: WMAP sensitivity to unresolved point sources
- XMM-Newton studies of a massive cluster of galaxies: RXCJ2228.6+2036
- Soft X-ray in-flight calibration of the ROSAT PSPC