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Ray-tracing of shape metrology data of grazing incidence x-ray astronomy mirrors

机译:掠入射X射线天文学反射镜的形状计量数据的射线追踪

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A number of future X-ray astronomy missions (e.g. Simbol-X, eROSITA) plan to utilize high throughput grazing incidence optics with very lightweight mirrors. The severe mass specifications require a further optimization of the existing technology with the consequent need of proper optical numerical modeling capabilities for both the masters and the mirrors. A ray tracing code has been developed for the simulation of the optical performance of type I Wolter masters and mirrors starting from 2D and 3D metrology data. In particular, in the case of 2D measurements, a 3D data set is reconstructed on the basis of dimensional references and used for the optical analysis by ray tracing. In this approach, the actual 3D shape is used for the optical analysis, thus avoiding the need of combining the separate contributions of different 2D measurements that require the knowledge of their interactions which is not normally available. The paper describes the proposed approach and presents examples of application on a prototype engineering master in the frame of ongoing activities carried out for present and future X-ray missions.
机译:许多未来的X射线天文学任务(例如Simbol-X,eROSITA)计划利用高通量掠射入射光学器件和非常轻便的反射镜。严格的质量规格要求对现有技术进行进一步的优化,因此需要对原版和反射镜都具有适当的光学数值建模功能。已经开发了一种光线跟踪代码,用于从2D和3D计量数据开始模拟I型Wolter主镜和反射镜的光学性能。特别是在2D测量的情况下,将基于尺寸参考重建3D数据集,并将其用于通过射线追踪进行光学分析。在这种方法中,实际的3D形状用于光学分析,从而避免了需要将通常不可用的不同2D测量的单独贡献结合在一起的需要,而这些贡献需要了解它们的相互作用。本文描述了所建议的方法,并在针对当前和未来X射线任务正在进行的活动框架中,介绍了在原型工程大师上的应用示例。

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