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Design and development of the SIMBOL-X hard x-ray optics

机译:Simbol-X硬X射线光学的设计与开发

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The SIMBOL-X formation-flight X-ray mission will be operated by ASI and CNES in 2014, with a large participation of the French and Italian high energy astrophysics scientific community. Also German and US Institutions are contributing in the implementation of the scientific payload. Thanks to the formation-flight architecture, it will be possible to operate a long (20 m) focal length grazing incidence mirror module, formed by 100 confocal multilayer-coated Wolter I shells. This system will allow us to focus X-rays over a very broad energy band, from 0.5 keV up to 80 keV and beyond, with more than two orders of magnitude improvement in angular resolution (20 arcsec HEW) and sensitivity (0.5 μCrab on axis @30 keV) compared to non focusing detectors used so far. The X-ray mirrors will be realized by Ni electroforming replication, already successfully used for BeppoSAX, XMM-Newton, and JET-X/SWIFT; the thickness trend will be about two times less than for XMM, in order to save mass. Multilayer reflecting coatings will be implemented, in order to improve the reflectivity beyond 10 keV and to increase the field of view 812 arcmin at 30 keV). In this paper, the SIMBOL-X optics design, technology and implementation challenges will be discussed; it will be also reported on recent results obtained in the context of the SIMBOL-X optics development activities.
机译:Simbol-X Chefation-Flight X-Ray Mission将于2014年ASI和CNES运营,法国和意大利高能量天体物理学科学界的大量参与。德国和美国机构也在有助于实施科学有效载荷。由于形成飞行架构,可以操作长(20米)的焦距放牧入射镜模块,由100个共焦多层涂层的熔炉I壳形成。该系统将允许我们将X射线聚焦在一个非常广泛的能带上,从0.5kev到80 kev及更高,有两个以上的角度分辨率(20个arcsec Hew)和灵敏度(轴上0.5μcrab)的数量级改善@ 30 kev)与迄今为止使用的非聚焦探测器相比。 X射线镜将由NI电铸复制实现,已成功用于Bepposax,XMM-Newton和Jet-X / Swift;为了节省质量,厚度趋势大约比Xmm小约两倍。将实施多层反射涂层,以改善超过10keV的反射率,并在30keV下增加视野812 Arcmin)。本文将讨论Simbol-X光学设计,技术和实施挑战;还将在Simbol-X光学开发活动的背景下获得最近获得的结果。

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