Probing Cosmology and Cluster Astrophysics with Multi-Wavelength Surveys I. Correlation Statistics
arXiv:1909.02179 · doi:10.1093/mnras/stz3021
Abstract
Upcoming multi-wavelength astronomical surveys will soon discover all massive galaxy clusters and provide unprecedented constraints on cosmology and cluster astrophysics. In this paper, we investigate the constraining power of the multi-band cluster surveys, through a joint analysis of three observables associated with clusters of galaxies, including thermal Sunyaev-Zel'dovich (tSZ) effect in cosmic microwave background (CMB), X-ray emission of ionized gas, and gravitational weak lensing effect of background galaxies by the cluster's gravitational potential. We develop a theoretical framework to predict and interpret two-point correlation statistics among the three observables using a semi-analytic model of intracluster medium (ICM) and halo-based approach. In this work, we show that the auto- and cross-angular power spectra in tSZ, X-ray and lensing statistics from upcoming missions (eROSITA, CMB-S4, and LSST) can help break the degeneracy between cosmology and ICM physics. These correlation statistics are less sensitive to selection biases, and are able to probe ICM physics in distant, faint and small clusters that are otherwise difficult to be detected individually. We show that the correlation statistics are able to provide cosmological constraints comparable to the conventional cluster abundance measurements, while constraining cluster astrophysics at the same time. Our results indicate that the correlation statistics can significantly enhance the scientific returns of upcoming multi-wavelength cluster surveys.
21 pages, 12 figures, 4 tables, accepted for publication in MNRAS
References in corpus (20)
- Toward the Standard Population Synthesis Model of the X-Ray Background: Evolution of X-Ray Luminosity and Absorption Functions of Active Galactic Nuclei Including Compton-Thick Populations
- Testing X-ray Measurements of Galaxy Clusters with Cosmological Simulations
- Rotation-Dependent Catastrophic Disruption of Gravitational Aggregates
- eROSITA Science Book: Mapping the Structure of the Energetic Universe
- X-ray spectral properties of AGN in the Chandra Deep Field South
- Effects of Baryons and Dissipation on the Matter Power Spectrum
- A universal model for halo concentrations
- Baryons at the Edge of the X-ray Brightest Galaxy Cluster
- Simulations of AGN feedback in galaxy clusters and groups: impact on gas fractions and the Lx-T scaling relation
- Intrinsic alignments of SDSS-III BOSS LOWZ sample galaxies
- Hydrodynamic Simulation of Non-thermal Pressure Profiles of Galaxy Clusters
- The Evolution of Obscuration in AGN
- Mass Accretion and its Effects on the Self-Similarity of Gas Profiles in the Outskirts of Galaxy Clusters
- SZ and CMB reconstruction using Generalized Morphological Component Analysis
- A Measurement of the Galaxy Group-Thermal Sunyaev-Zel'dovich Effect Cross-Correlation Function
- Fundamental Physics from Future Weak-Lensing Calibrated Sunyaev-Zel'dovich Galaxy Cluster Counts
- Investigating Cluster Astrophysics and Cosmology with Cross-Correlation of the Thermal Sunyaev-Zel'dovich Effect and Weak Lensing
- On the Cluster Physics of Sunyaev-Zel'dovich and X-ray Surveys IV: Characterizing Density and Pressure Clumping due to Infalling Substructures
- Predicting the CIB- contamination in the cross-correlation of the tSZ effect and
- Linearized iterative least-squares (LIL): A parameter fitting algorithm for component separation in multifrequency CMB experiments such as Planck
Cited by in corpus (6)
- The BAHAMAS project: Evaluating the accuracy of the halo model in predicting the non-linear matter power spectrum
- Correlations of Dark Matter, Gas and Stellar Profiles in Dark Matter Halos
- The X-ray Angular Power Spectrum of Extended Sources in the eROSITA Final Equatorial Depth Survey
- Baryon Pasting the Uchuu Lightcone Simulation
- Cosmology and Astrophysics with the Diffuse eRASS1 X-ray Angular Power Spectrum
- The KALEIDOSCOPE survey : A new strong and weak gravitational lensing view of the massive galaxy cluster MACS J1423.8+2404