雅典娜x射线望远镜的硅孔光学衍射效应建模

D. Spiga, G. Sironi, D. Della Monica Ferreira, A. S. Jegers, E. Bergbäck Knudsen, M. Bavdaz, I. Ferreira
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引用次数: 2

摘要

硅孔光学(SPO)是雅典娜x射线望远镜反射镜模块选用的组装技术。SPO镜面模块由四层蚀刻和楔形硅晶片组成,以创建一个坚固而轻便的结构,能够在每个孔中复制Wolter-I几何形状,以便在望远镜焦平面上成像x射线。由于孔径较小(几mm2), x射线中的孔径衍射效应很小,但对角分辨率的影响并非完全可以忽略不计。相比之下,衍射效应是紫外光照明的主要术语,它将用于将雅典娜的600个镜子模块对准一个共同的焦点。因此,衍射效应需要适当建模,这是esa领导的SImPOSIUM(硅孔光学模拟和建模)项目的一项具体任务,该项目涉及INAF-Brera和DTU。在此背景下,专门开发了一种软件工具(SWORDS: software for diffraction of silicon pore optics)来模拟SPO反射镜模块中的衍射效应。这种方法还允许用户以自一致的方式有效地预测各种缺陷(图形误差,不对准)的影响,在不同的实验配置(x射线源离轴或在有限距离),作为射线追踪的快速可靠的替代方案,也在x射线波长。
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Modelling diffractive effects in silicon pore optics for the ATHENA X-ray Telescope
Silicon pore optics (SPO) are the technology selected for the assembly of the mirror module of the ATHENA x-ray telescope. An SPO mirror module consists of a quadruple stack of etched and wedged silicon wafers, in order to create a stiff and lightweight structure, able to reproduce in each pore the Wolter-I geometry required to image x-rays on the telescope focal plane. Due to the small pore size (a few mm2 ), aperture diffraction effects in x-rays are small, but not totally negligible to the angular resolutions at play. In contrast, diffraction effects are the dominant term in the UV light illumination that will be used to co-align the 600 mirror modules of ATHENA to a common focus. For this reason, diffractive effects need to be properly modeled, and this constitutes a specific task of the ESA-led SImPOSIUM (sIlicon pore optic simulation and modelling) project, involving INAF-Brera and DTU. In this context, a specific software tool (SWORDS: Software for diffraction of silicon pore optics) has been developed to the end of simulating diffraction effects in SPO mirror modules. This approach also allows the user to effectively predict the effects of various imperfections (figure errors, misalignments) in a self-consistent way, in different experimental configurations (x-ray source off-axis or at finite distance), as a fast and reliable alternative to ray-tracing, also at x-ray wavelengths.
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