Simbol-X Hard X-ray Focusing Mirrors: Results Obtained During the Phase A Study
G. Tagliaferri, S. Basso, G. Borghi, W. Burkert, O. Citterio, M., Civitani, P. Conconi, V. Cotroneo, M. Freyberg, D. Garoli, P. Gorenstein, G., Hartner, V. Mattarello, A. Orlandi, G. Pareschi, S. Romaine, D. Spiga, G., Valsecchi, D. Vernani

TL;DR
Simbol-X aims to advance hard X-ray imaging up to 80 keV with a novel mirror module, demonstrating promising initial results in fabrication and integration, while planning improvements to meet stringent performance goals.
Contribution
The paper reports on the technological development and initial testing of the Simbol-X mirror module, including fabrication, integration, and performance evaluation during Phase A.
Findings
Produced mirror shells with HEW <~30 arcsec at 30 keV
Developed a valid integration process for thin shells
Demonstrated potential to meet imaging quality requirements
Abstract
Simbol-X will push grazing incidence imaging up to 80 keV, providing a strong improvement both in sensitivity and angular resolution compared to all instruments that have operated so far above 10 keV. The superb hard X-ray imaging capability will be guaranteed by a mirror module of 100 electroformed Nickel shells with a multilayer reflecting coating. Here we will describe the technogical development and solutions adopted for the fabrication of the mirror module, that must guarantee an Half Energy Width (HEW) better than 20 arcsec from 0.5 up to 30 keV and a goal of 40 arcsec at 60 keV. During the phase A, terminated at the end of 2008, we have developed three engineering models with two, two and three shells, respectively. The most critical aspects in the development of the Simbol-X mirrors are i) the production of the 100 mandrels with very good surface quality within the timeline of…
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