Narrow Band X-ray Photometry as a Tool for Studying Galaxy and Cluster Mass Distributions
arXiv:1310.6373 · doi:10.1093/mnras/stt1414
Abstract
We explore the utility of narrow band X-ray surface photometry as a tool for making fully Bayesian, hydrostatic mass measurements of clusters of galaxies, groups and early-type galaxies. We demonstrate that it is sufficient to measure the surface photometry with the Chandra X-ray observatory in only three (rest frame) bands (0.5--0.9 keV, 0.9--2.0 keV and 2.0--7.0 keV) in order to constrain the temperature, density and abundance of the hot interstellar medium (ISM). Adopting parametrized models for the mass distribution and radial entropy profile and assuming spherical symmetry, we show that the constraints on the mass and thermodynamic properties of the ISM that are obtained by fitting data from all three bands simultaneously are comparable to those obtained by fitting similar models to the temperature and density profiles derived from spatially resolved spectroscopy, as is typically done. We demonstrate that the constraints can be significantly tightened when exploiting a recently derived, empirical relationship between the gas fraction and the entropy profile at large scales, eliminating arbitrary extrapolations at large radii. This "Scaled Adiabatic Model" (ScAM) is well suited to modest signal-to-noise data, and we show that accurate, precise measurements of the global system properties are inferred when employing it to fit data from even very shallow, snapshot X-ray observations. The well-defined asymptotic behaviour of the model also makes it ideally suited for use in Sunyaev-Zeldovich studies of galaxy clusters.
15 pages, 6 figures. Accepted for Publication in MNRAS
References in corpus (21)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Likelihoods and Parameters from the WMAP data
- Intracluster Medium Entropy Profiles for a Chandra Archival Sample of Galaxy Clusters
- Chandra temperature profiles for a sample of nearby relaxed galaxy clusters
- Testing X-ray Measurements of Galaxy Clusters with Cosmological Simulations
- Baryons at the Edge of the X-ray Brightest Galaxy Cluster
- The Black Hole Mass, Stellar M/L, and Dark Halo in M87
- Total mass biases in X-ray galaxy clusters
- Probing the Dark Matter and Gas Fraction in Relaxed Galaxy Groups with X-ray observations from Chandra and XMM
- Evidence for Non-Hydrostatic Gas from the Cluster X-ray to Lensing Mass Ratio
- Measuring the non-thermal pressure in early type galaxy atmospheres: A comparison of X-ray and optical potential profiles in M87 and NGC1399
- The X-Ray Concentration-Virial Mass Relation
- The gas distribution in the outer regions of galaxy clusters
- Chi-square and Poissonian Data: Biases Even in the High-Count Regime and How to Avoid them
- Hot Gas in Galaxy Groups: Recent Observations
- XMM-Newton study of 0.012<z<0.024 groups. I: Overview of the IGM thermodynamics
- Weighing the Quiescent Central Black Hole in an Elliptical Galaxy with X-ray Emitting Gas
- Hydrostatic Gas Constraints on Supermassive Black Hole Masses: Implications for Hydrostatic Equilibrium and Dynamical Modelling in a Sample of Early-Type Galaxies
- On the thermodynamic self-similarity of the nearest, most relaxed, giant ellipticals
- The ELIXR Galaxy Survey. II: Baryons and Dark Matter in an Isolated Elliptical Galaxy
- A statistical analysis of the Two Dimensional XMM-Newton Group Survey: The impact of feedback on group properties
- Reconciling stellar dynamical and hydrostatic X-ray mass measurements of an elliptical galaxy with gas rotation, turbulence and magnetic fields
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