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Upgraded Hard X-ray Telescope with Multilayer Supermirror for the InFOCμS balloon Experiment

机译:用于InFOCμS气球实验的具有多层超镜的升级版硬X射线望远镜

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Hard X-ray focusing observation is important to reveal non-thermal emission mechanism and origin in active galaxies and clusters of galaxies. We have carried out the hard X-ray observation throughout the InFOCμS program, which is an international balloon-borne experiment in collaboration with NASA/GSFC and Nagoya University. The telescope is conical approximation of Wolter-Ⅰ optics with 8 m focal length and 40 cm diameter. It consists of 255 nested thin (0.17 mm thickness) reflectors with incidence angles of 0.10° to 0.36°. Reflectors are coated with depth-graded platinum-carbon (Pt/C) multilayers, so-called supermirrors, with periodic length of 2.6 to 13 nm and bi-layer number of 28 to 79, depending on incidence angles. We are now continuously fabricating advanced next hard X-ray telescope for the second InFOCμS flight in 2004. Compared with the first telescope, the following improvements have been made on the second one. Supermirror reflectors have wider sensitivity in energy band of 20 — 60 keV adopting optimum supermirror design for balloon observation, and smaller interfacial roughness owing to complete replication technique. For upgrading of the image quality, we then adopted stiffer reflector substrate, selected replication mandrel with better shape, and the modified telescope housing with higher alignment accuracy for reflectors. The performance of the new hard X-ray telescope was measured in X-ray beamline facility in ISAS/JAXA and synchrotron radiation facility SPring-8. The effective area and image quality are obtained to be 45 cm~2 at 30 keV and 23 cm~2 at 40 keV, and 2.5 arcmin in half power diameter, respectively. In this paper we report our development of the upgraded hard X-ray telescope for the second balloon flight experiment.
机译:硬X射线聚焦观察对于揭示活跃星系和星系团中的非热辐射机理和起源很重要。我们在整个InFOCμS计划中进行了硬X射线观察,这是与NASA / GSFC和名古屋大学合作开展的一项国际气球载实验。望远镜是焦距为8 m,直径为40 cm的Wolter-Ⅰ光学系统的圆锥近似。它由255个嵌套的薄反射器(厚度为0.17 mm)组成,入射角为0.10°至0.36°。反射器涂有深度渐变的铂碳(Pt / C)多层膜,即所谓的超级镜,其周期长度为2.6至13 nm,双层数为28至79,具体取决于入射角。现在,我们正在为2004年的第二次InFOCμS飞行连续制造先进的下一代硬X射线望远镜。与第一架望远镜相比,第二架进行了以下改进。超级反射镜反射器在20-60 keV的能带中具有更宽的灵敏度,采用最佳的超级反射镜设计进行气球观察,由于采用了完整的复制技术,因此界面粗糙度较小。为了提高图像质量,我们随后采用了更硬的反射镜基板,选定的具有更好形状的复制芯轴以及改进的望远镜壳体,以提高反射镜的对准精度。新型硬X射线望远镜的性能在ISAS / JAXA的X射线束线设施和同步加速器辐射设施SPring-8中进行了测量。有效面积和图像质量在30 keV时为45 cm〜2,在40 keV时为23 cm〜2,半功率直径分别为2.5 arcmin。在本文中,我们报告了用于第二次气球飞行实验的升级版硬X射线望远镜的开发情况。

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