MultiDark-Clusters: Galaxy Cluster Mock Light-Cones, eROSITA and the Cluster Power Spectrum
arXiv:1804.07063 · doi:10.1093/mnras/sty1901
Abstract
Cosmological simulations are fundamental tools to study structure formation and the astrophysics of evolving structures, in particular clusters of galaxies. While hydrodynamical simulations cannot sample efficiently large volumes and explore different cosmologies at the same time, N-body simulations lack the baryonic physics that is crucial to determine the observed properties of clusters. One solution is to use (semi-)analytical models to implement the needed baryonic physics. In this way, we can generate the many mock universes that will be required to fully exploit future large sky surveys, such as that from the upcoming eROSITA X-ray telescope. We developed a phenomenological model based on observations of clusters to implement gas density and temperature information on the dark-matter-only halos of the MultiDark simulations. We generate several full-sky mock light-cones of clusters for the WMAP and Planck cosmologies, adopting different parameters in our phenomenological model of the intra-cluster medium. For one of these simulations and models, we also generate 100 light-cones corresponding to 100 random observers and explore the variance among them in several quantities. In this first paper on MultiDark mock galaxy cluster light-cones, we focus on presenting our methodology and discuss predictions for eROSITA, in particular, exploring the potential of angular power spectrum analyses of its detected (and undetected) cluster population to study X-ray scaling relations, the intra-cluster medium, and the composition of the cosmic X-ray background. We make publicly available on-line more than 400 GB of light-cones, which include the expected eROSITA count rate, on Skies & Universes (http://www.skiesanduniverses.org).
21 pages, 13 figures, 2 tables. Accepted for publication in MNRAS
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- The eROSITA X-ray telescope on SRG
- The galaxy cluster mass scale and its impact on cosmological constraints from the cluster population
- Scaling Properties of Galaxy Groups
- Turbulent pressure support and hydrostatic mass-bias in the intracluster medium
- The Abell 3391/95 galaxy cluster system: A 15 Mpc intergalactic medium emission filament, a warm gas bridge, infalling matter clumps, and (re-) accelerated plasma discovered by combining SRG/eROSITA data with ASKAP/EMU and DECam data
- Full-sky photon simulation of clusters and active galactic nuclei in the soft X-rays for eROSITA
- Machine Learning methods to estimate observational properties of galaxy clusters in large volume cosmological N-body simulations
- Validating the methodology for constraining the linear growth rate from clustering anisotropies
- Emulating Sunyaev-Zeldovich Images of Galaxy Clusters using Auto-Encoders
- Baryon Pasting the Uchuu Lightcone Simulation
- Modelling the selection of galaxy groups with end to end simulations
- Gravitational Lensing By a Massive Object in a Dark Matter Halo. II. Shear, Phase, and Image Geometry
- Solving small-scale clustering problems in approximate lightcone mocks
- Deep Learning generated observations of galaxy clusters from dark-matter-only simulations