A Generative Model for Realistic Galaxy Cluster X-ray Morphologies
arXiv:2406.10456 · doi:10.3847/1538-4357/ad5183
Abstract
The X-ray morphologies of clusters of galaxies display significant variations, reflecting their dynamical histories and the nonlinear dependence of X-ray emissivity on the density of the intracluster gas. Qualitative and quantitative assessments of X-ray morphology have long been considered a proxy for determining whether clusters are dynamically active or "relaxed." Conversely, the use of circularly or elliptically symmetric models for cluster emission can be complicated by the variety of complex features realized in nature, spanning scales from Mpc down to the resolution limit of current X-ray observatories. In this work, we use mock X-ray images from simulated clusters from THE THREE HUNDRED project to define a basis set of cluster image features. We take advantage of clusters' approximate self similarity to minimize the differences between images before encoding the remaining diversity through a distribution of high order polynomial coefficients. Principal component analysis then provides an orthogonal basis for this distribution, corresponding to natural perturbations from an average model. This representation allows novel, realistically complex X-ray cluster images to be easily generated, and we provide code to do so. The approach provides a simple way to generate training data for cluster image analysis algorithms, and could be straightforwardly adapted to generate clusters displaying specific types of features, or selected by physical characteristics available in the original simulations.
12 pages, 9 figures. To appear in ApJ
References in corpus (53)
- Observational Evidence of AGN Feedback
- MultiDark simulations: the story of dark matter halo concentrations and density profiles
- Ahf: Amiga's Halo Finder
- Cluster Lensing And Supernova survey with Hubble (CLASH): An Overview
- Shocks and cold fronts in galaxy clusters
- X-ray Spectroscopy of Cooling Clusters
- The origin of cold fronts in the cores of relaxed galaxy clusters
- Baryons at the Edge of the X-ray Brightest Galaxy Cluster
- Joint Analysis of Cluster Observations: II. Chandra/XMM-Newton X-ray and Weak Lensing Scaling Relations for a Sample of 50 Rich Clusters of Galaxies
- The Three Hundred project: a large catalogue of theoretically modelled galaxy clusters for cosmological and astrophysical applications
- Searching for Cool Core Clusters at High redshift
- Cool Core Clusters from Cosmological Simulations
- A new method to quantify the effects of baryons on the matter power spectrum
- Simulations of the Microwave Sky
- Impact of Cluster Physics on the Sunyaev-Zel'dovich Power Spectrum
- X-Ray surface brightness and gas density fluctuations in the Coma cluster
- Sloshing of the Magnetized Cool Gas in the Cores of Galaxy Clusters
- The Remarkable Similarity of Massive Galaxy Clusters From z~0 to z~1.9
- X-ray Spectroscopy of the Virgo Cluster out to the Virial Radius
- Gas sloshing, cold front formation, and metal redistribution: the Virgo cluster as a quantitative test case
- Substructure of the galaxy clusters in the REXCESS sample: observed statistics and comparison to numerical simulations
- The Evolution of Structure in X-ray Clusters of Galaxies
- Cosmology and Astrophysics from Relaxed Galaxy Clusters I: Sample Selection
- A Simple and Accurate Model for Intra-Cluster Gas
- Azimuthally Resolved X-Ray Spectroscopy to the Edge of the Perseus Cluster
- Gas Density Fluctuations in the Perseus Cluster: Clumping Factor and Velocity Power Spectrum
- Gas clumping in galaxy clusters
- Exploring the Energetics of Intracluster Gas with a Simple and Accurate Model
- A Deep Learning Approach to Galaxy Cluster X-ray Masses
- Large-scale Motions in the Perseus Galaxy Cluster
- Gas perturbations in cool cores of galaxy clusters: effective equation of state, velocity power spectra and turbulent heating
- Deep Chandra Observations of the Extended Gas Sloshing Spiral in A2029
- Suppressed effective viscosity in the bulk intergalactic plasma
- LoCuSS: Hydrostatic Mass Measurements of the High- Cluster Sample -- Cross-calibration of Chandra and XMM-Newton
- X-ray observations of the galaxy cluster Abell 2029 to the virial radius
- The Three Hundred Project: correcting for the hydrostatic-equilibrium mass bias in X-ray and SZ surveys
- The nature and energetics of AGN-driven perturbations in the hot gas in the Perseus Cluster
- Robust Quantification of Galaxy Cluster Morphology Using Asymmetry and Central Concentration
- Further X-ray observations of the galaxy cluster PKS 0745-191 to the virial radius and beyond
- Constraints on the optical depth of galaxy groups and clusters
- Accurate Realizations of the Ionized Gas in Galaxy Clusters: Calibrating Feedback
- On the Nature of X-ray Surface Brightness Fluctuations in M87
- Cluster Bulleticity
- Galaxy cluster mass estimation with deep learning and hydrodynamical simulations
- The Three Hundred Project: quest of clusters of galaxies morphology and dynamical state through Zernike Polynomials
- Simulations of the Pairwise Kinematic Sunyaev-Zel'dovich Signal
- Sloshing Gas in the Core of the Most Luminous Galaxy Cluster RXJ1347.5-1145
- Baryon Pasting Algorithm: Halo-based and Particle-based Pasting Methods
- The Concentration-Mass Relation of Massive, Dynamically Relaxed Galaxy Clusters: Agreement Between Observations and CDM Simulations
- Benchmarks and Explanations for Deep Learning Estimates of X-ray Galaxy Cluster Masses
- Gas clumping in the outskirts of the Virgo cluster
- Chandra measurements of gas homogeneity and turbulence at intermediate radii in the Perseus Cluster
- The Three Hundred Project: Mapping The Matter Distribution in Galaxy Clusters Via Deep Learning from Multiview Simulated Observations