Effect of different supermirrors on the performance of a hard x-ray telescope

Fangfang Wang, Jingtao Zhu, M. Tan, Li Jiang, Fengli Wang, B. Mu, Zhanshan Wang
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Abstract

We are developing a hard X-ray telescope utilizing multilayer supermirrors. This telescope is conical approximation of the Wolter-I configuration with tightly nested shells. Because of the fact that different nested shell corresponds to different grazing incident angle, so the optimum multilayer design depends on the grazing angle, and one would therefore, ideally design a different coating for each of the nested mirror shells. However, as a matter of practicality, we have to reduce the number of different designs for a reasonable compromise between the complexity of the calculation and optimal performance. In this paper, we investigate the effect of different angular classification on the effective area of the hard X-ray telescope. Many groups of hard X-ray supermirrors are optimized with different grazing incident angles using a numerical and analysis method. These supermirrors are divided into different number of groups, e.g. two, four, six, eight, ten, twelve, fourteen, and sixteen, respectively, and the corresponding effective areas are calculated. Results show that six groups of X-ray supermirrors are suitable for a reasonable compromise between optimal performance and the complexity of the calculation and fabrication.
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不同超镜对硬x射线望远镜性能的影响
我们正在开发一种利用多层超镜的硬x射线望远镜。这个望远镜是wolter - 1结构的锥形近似值,有紧密嵌套的外壳。由于不同的嵌套壳体对应不同的掠射入射角,因此最佳的多层设计取决于掠射角,因此,理想情况下,可以为每个嵌套壳体设计不同的涂层。然而,出于实用性的考虑,我们必须减少不同设计的数量,以在计算的复杂性和最佳性能之间做出合理的妥协。本文研究了不同角度分类对硬x射线望远镜有效面积的影响。采用数值分析方法对多组不同掠射入射角的硬x射线超镜进行了优化。将这些超镜分别分成2组、4组、6组、8组、10组、12组、14组和16组,并计算相应的有效面积。结果表明,六组x射线超镜在最佳性能和计算制造复杂性之间取得了合理的折衷。
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