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Characterization of a Hard X-ray Telescope at Synchrotron Facility SPring-8

机译:同步加速器设施SPring-8的硬X射线望远镜的表征

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Space-borne astronomical instruments require extensive characterization on the ground before launch. In the hard X-ray region however, it is difficult for a laboratory-based beamline using a conventional X-ray source to provide a capability sufficient for pre-flight high-precision calibration. In this paper, we describe an experiment to characterize a hard X-ray telescope at a synchrotron facility, mainly on the basis of experimental setup and examples of measured results. We have developed hard X-ray telescopes consisting of Wolter-I grazing incidence optics and platinum-carbon multilayer supermirror coatings. The telescopes have been characterized at the synchrotron facility SPring-8 beamline BL20B2. The measurements at BL20B2 have great advantages such as extremely high flux, large-sized and less-divergent beam, and monochromatic beam covering the entire hard X-ray region from 8 to over 100keV. The telescope was illuminated by monochromatic hard X-rays, and the focused image was measured by high resolution hard X-ray imagers. The entire telescope aperture was mapped by a small beam, and the effective area and the point spread function were obtained as well as local optical properties for further diagnostics of the characteristics of the telescope.
机译:航天天文仪器在发射前需要在地面上进行广泛的表征。但是,在硬X射线区域中,使用常规X射线源的基于实验室的光束线很难提供足以进行飞行前高精度校准的能力。在本文中,我们主要基于实验装置和测量结果示例,描述了在同步加速器设施中表征硬X射线望远镜的实验。我们已经开发了硬X射线望远镜,该望远镜由Wolter-I掠射入射光学器件和铂-碳多层超镜涂层组成。望远镜已在同步加速器SPring-8光束线BL20B2上进行了表征。 BL20B2的测量具有很大的优势,例如通量极高,光束尺寸大且发散小,并且单色光束覆盖了从8keV到100keV以上的整个硬X射线区域。用单色硬X射线照射望远镜,并用高分辨率硬X射线成像仪测量聚焦图像。整个望远镜孔径由一小束光束测绘,并获得有效面积和点扩展函数以及局部光学特性,以进一步诊断望远镜的特性。

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