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Optimizations of Pt/SiC and W/Si multilayers for the Nuclear Spectroscopic Telescope Array

机译:核光谱望远镜阵列的Pt / SiC和W / Si多层膜的优化

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The Nuclear Spectroscopic Telescope Array, NuSTAR, is a NASA funded Small Explorer Mission, SMEX, scheduled for launch in mid 2011. The spacecraft will fly two co-aligned conical approximation Wolter-I optics with a focal length of 10 meters. The mirrors will be deposited with Pt/SiC and W/Si multilayers to provide a broad band reflectivity from 6 keV up to 78.4 keV. To optimize the mirror coating we use a Figure of Merit procedure developed for gazing incidence optics, which averages the effective area over the energy range, and combines an energy weighting function with an angular weighting function to control the shape of the desired effective area. The NuSTAR multilayers are depth graded with a power-law, d_i = a/(b + i)~c, and we optimize over the total number of bi-layers, N, c, and the maximum bi-layer thickness, d_(max). The result is a 10 mirror group design optimized for a flat even energy response both on and off-axis.
机译:NuSTAR核光谱望远镜阵列是由NASA资助的小型探索者任务(SMEX),计划于2011年中期发射。该航天器将飞行两个共聚焦的圆锥近似Wolter-I光学系统,焦距为10米。反射镜将沉积Pt / SiC和W / Si多层膜,以提供从6 keV到78.4 keV的宽带反射率。为了优化镜面涂层,我们使用为凝视入射光学器件开发的品质因数程序,该程序将能量范围内的有效面积平均化,并将能量加权函数与角度加权函数结合起来以控制所需有效区域的形状。 NuSTAR多层通过幂律d_i = a /(b + i)〜c进行深度分级,我们在双层总数N,c和最大双层厚度d_(最高)。结果是优化了10个反射镜组设计,以实现轴上和轴外的平坦均匀能量响应。

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