Simulating the WFXT sky
P. Tozzi, J. Santos, H. Yu, A. Bignamini, P. Rosati, S. Borgani, S., Campana, P. Conconi, R. Gilli, M. Paolillo, A. Ptak, and the WFXT Team

TL;DR
This paper presents detailed simulations of the Wide Field X-ray Telescope (WFXT) to evaluate its scientific potential in detecting and characterizing various X-ray sources, aiding mission optimization and scientific planning.
Contribution
It introduces comprehensive simulation methods for WFXT, including images and spectra, to assess detection capabilities and scientific outcomes for extragalactic X-ray sources.
Findings
Simulated images help determine flux detection limits.
Analysis of source confusion at faint fluxes.
Spectral simulations enable characterization of high-z galaxy clusters.
Abstract
We investigate the scientific impact of the Wide Field X-ray Telescope mission. We present simulated images and spectra of X-ray sources as observed from the three surveys planned for the nominal 5-year WFXT lifetime. The goal of these simulations is to provide WFXT images of the extragalactic sky in different energy bands based on accurate description of AGN populations, normal and star forming galaxies, groups and clusters of galaxies. The images are realized using a detailed PSF model, instrumental and physical backgrounds/foregrounds, accurate model of the effective area and the related vignetting effect. Thanks to this comprehensive modelization of the WFXT properties, the simulated images can be used to evaluate the flux limits for detection of point and extended sources, the effect of source confusion at very faint fluxes, and in general the efficiency of detection algorithms. We…
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Taxonomy
TopicsAstrophysics and Cosmic Phenomena · Galaxies: Formation, Evolution, Phenomena · Particle Detector Development and Performance
