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Design and fabrication of a supermirror with smooth and broad response for hard x-ray telescopes

机译:具有平稳宽响应的硬X射线望远镜超镜的设计和制造

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摘要

We present our design and fabrication scheme of a supermirror for hard x-ray telescopes to improve the performance of reflection. Supermirrors are designed to achieve target reflectivity profiles with small ripples in the interesting energy range with a limited number of layer pairs. Starting from conventional design methods, we optimized the thickness distribution of the structure using a numerical approach with the merit function established for this application. As an example, a platinum-carbon supermirror structure of 123 layer pairs with a varying d-space of 2-6 nm was designed to enhance the reflectivity in the energy range from 11 to 55 keV with a flat top at a grazing angle of 0.28 deg. The multilayer thus designed was deposited on a float glass by our DC magnetron sputtering system. The reflectivity profile was successfully measured to be ~20% with little oscillation in all energy band of interest.
机译:我们介绍了用于硬X射线望远镜的超级镜的设计和制造方案,以提高反射性能。超级反射镜的设计目的是在目标能量范围内以有限的层对数量在很小的纹波下实现目标反射率曲线。从常规设计方法开始,我们使用数值方法优化了结构的厚度分布,并为此功能建立了优点函数。例如,设计了123个层对的铂碳超级反射镜结构,其d空间变化为2-6 nm,从而在11至55 keV的能量范围内增强了反射率,并且在0.28的掠角下具有平坦的顶部度这样设计的多层通过我们的直流磁控溅射系统沉积在浮法玻璃上。在所有感兴趣的能带中,反射率曲线均成功测量为〜20%,且几乎没有振荡。

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