Abstract
X-ray mirrors are usually built in the Wolter I (paraboloid-hyperboloid) configuration. This design exhibits no spherical aberration on-axis but suffers from field curvature, coma and astigmatism, therefore, the angular resolution degrades rapidly with increasing off-axis angles. Different mirror designs exist in which the primary and secondarymirror profiles are expanded as a power series in order to increase the angular resolution at large off-axis positions, at the expanses of the on-axis performances. Here we present the design and global trade off study of an X-ray mirror systems based on polynomial optics in view of the Wide Field X-ray Telescope (WFXT) mission. WFXT aims at performing an extended cosmological survey in the soft X-ray band with unprecedented flux sensitivity. To achieve these goals the angular resolution required for the mission is very demanding, ~5 arcsec mean resolution across a 1° field of view. In addition an effective area of 5-9000 cm2 at 1 keV is needed.
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Conconi, P., Campana, S., Tagliaferri, G., Pareschi, G., Citterio, O., Cotroneo, V., … Civitani, M. (2010). A wide field X-ray telescope for astronomical survey purposes: From theory to practice. Monthly Notices of the Royal Astronomical Society, 405(2), 877–886. https://doi.org/10.1111/j.1365-2966.2010.16513.x
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