Smoothed Particle Inference: A Kilo-Parametric Method for X-ray Galaxy Cluster Modeling
arXiv:astro-ph/0507613 · doi:10.1086/509095
Abstract
We propose an ambitious new method that models the intracluster medium in clusters of galaxies as a set of X-ray emitting smoothed particles of plasma. Each smoothed particle is described by a handful of parameters including temperature, location, size, and elemental abundances. Hundreds to thousands of these particles are used to construct a model cluster of galaxies, with the appropriate complexity estimated from the data quality. This model is then compared iteratively with X-ray data in the form of adaptively binned photon lists via a two-sample likelihood statistic and iterated via Markov Chain Monte Carlo. The complex cluster model is propagated through the X-ray instrument response using direct sampling Monte Carlo methods. Using this approach the method can reproduce many of the features observed in the X-ray emission in a less assumption-dependent way that traditional analyses, and it allows for a more detailed characterization of the density, temperature, and metal abundance structure of clusters. Multi-instrument X-ray analyses and simultaneous X-ray, Sunyaev-Zeldovich (SZ), and lensing analyses are a straight-forward extension of this methodology. Significant challenges still exist in understanding the degeneracy in these models and the statistical noise induced by the complexity of the models.
17 pages, 29 figures, ApJ accepted
References in corpus (12)
- Cosmological parameters from SDSS and WMAP
- Cosmological parameters from CMB and other data: a Monte-Carlo approach
- A deep Chandra observation of the Perseus cluster: shocks and ripples
- Mapping small-scale temperature and abundance structures in the core of the Perseus cluster
- Chandra Observations of the Lensing Cluster EMSS 1358+6245: Implications for Self-Interacting Dark Matter
- XMM-Newton and Chandra Observations of the Galaxy Group NGC 5044. I. Evidence for Limited Multi-Phase Hot Gas
- Complex Structure of Galaxy Cluster Abell 1689: Evidence for a Merger from X-ray data?
- Bayesian joint analysis of cluster weak lensing and Sunyaev-Zel'dovich effect data
- Markov Chain Monte Carlo joint analysis of Chandra X-ray imaging spectroscopy and Sunyaev-Zeldovich Effect data
- Possible AGN Shock Heating in the Cool Core Galaxy Cluster Abell 478
- Multivariate Monte Carlo Methods for the Reflection Grating Spectrometers on XMM-Newton
- Simultaneous X-ray and Ultraviolet spectroscopy of the Seyfert galaxy NGC 5548. III. X-ray time variability
Cited by in corpus (18)
- Deep high-resolution X-ray spectra from cool-core clusters
- A Comprehensive Census of Nearby Infrared Excess Stars
- Velocity width measurements of the coolest X-ray emitting material in the cores of clusters, groups and elliptical galaxies
- Temperature Structure of the Intra-Cluster Medium from SPH and AMR simulations
- Simulation of Astronomical Images from Optical Survey Telescopes using a Comprehensive Photon Monte Carlo Approach
- Characterization of ICM Temperature Distributions of 62 Galaxy Clusters with XMM-Newton
- Characterizing the Properties of Clusters of Galaxies as a Function of Luminosity and Redshift
- A study of diffuse radio sources and X-ray emission in six massive clusters
- How unusual is the cool-core radio halo cluster CL1821+643 ?
- Scientific Objectives of the Hot Universe Baryon Surveyor (HUBS) Mission
- Analysis of XMM-Newton Observations of Supernova Remnant W49B and Clues to the Progenitor
- Application of an XMM-Newton EPIC Monte Carlo Technique to Analysis and Interpretation of Data for the Abell 1689, RX J0658-55 and Centaurus clusters of galaxies
- Sensor Distortion Effects in Photon Monte Carlo Simulations
- Deformation of Optics for Photon Monte Carlo Simulations
- Smoothed Particle Inference Analysis of SNR DEM L71
- SPI Analysis and Abundance Calculations of DEM L71, and Comparison to SN explosion Models
- High-resolution X-ray spectroscopy of clusters of galaxies
- Applications of Bayesian Probability Theory in Astrophysics