Detecting clusters of galaxies and active galactic nuclei in an eROSITA all-sky survey digital twin
R. Seppi, J. Comparat, E. Bulbul, K. Nandra, A. Merloni, N. Clerc, T., Liu, V. Ghirardini, A. Liu, M. Salvato, J. S. Sanders, J. Wilms, T. Dwelly,, T. Dauser, O. Konig, M. E. Ramos-Ceja, C. Garrel, and T. H. Reiprich

TL;DR
This paper presents a detailed simulation of the eROSITA all-sky survey, analyzing the detection and characterization of galaxy clusters and AGN to improve source catalog accuracy and cosmological studies.
Contribution
It introduces a comprehensive simulation of the eROSITA survey, enabling assessment of detection performance and source properties for galaxy clusters and AGN.
Findings
Half of the bright AGN and clusters are detected as point sources or extended sources.
Detection efficiency depends on flux, exposure, and cluster properties.
The simulation serves as a digital twin for the actual eROSITA survey.
Abstract
The extended ROentgen Survey with an Imaging Telescope Array (eROSITA) onboard the Spectrum-Roentgen-Gamma (SRG) observatory is revolutionizing X-ray astronomy. It provides large samples of active galactic nuclei (AGN) and clusters of galaxies, with the potential of studying X-ray sources and measuring cosmological parameters using X-ray-selected samples with higher precision than ever before. We aim to study the detection, and the selection of AGN and clusters in the first eROSITA all-sky survey (eRASS1), and to characterize the properties of the source catalog. We produced a half-sky eRASS1 simulation, by combining models that truthfully represent the clusters and AGN. In total, we simulated 1 116 758 clusters and 225 583 320 AGN. We ran the standard eROSITA detection algorithm. We matched the input and source catalogs with a photon-based algorithm. We perfectly recovered the bright…
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