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Optimization of graded multilayer designs for astronomical x-ray telescopes

机译:用于天文X射线望远镜的分级多层设计的优化

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We developed a systematic method for optimizing the design of depth-graded multilayers for astronomical hard-x-ray and soft-y-ray telescopes based on the instrument's bandpass and the field of view. We apply these methods to the design of the conical-approximation Wolter I optics employed by the balloon-borne High Energy Focusing Telescope, using W/Si as the multilayer materials. In addition, we present optimized performance calculations of mirrors, using other material pairs that are capable of extending performance to photon energies above the W K-absorption edge (69.5 keV), including Pt/C, Ni/C, Cu/Si, and Mo/Si.
机译:我们基于仪器的带通和视场,开发了一种用于优化天文硬X射线和软Y射线望远镜的深度渐变多层设计的系统方法。我们将这些方法应用于气球型高能聚焦望远镜采用W / Si作为多层材料的圆锥近似Wolter I光学器件的设计。此外,我们使用其他材料对(包括Pt / C,Ni / C,Cu / Si和Pt / C)能够将性能扩展到超过W K吸收边缘(69.5 keV)的光子能量的性能进行了优化的反射镜性能计算。 Mo / Si。

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