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Optical constants in the hard X-ray/Soft gamma ray range

机译:硬X射线/软伽马射线范围内的光学常数

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Future astrophysics missions operating in the hard X-ray/Soft Gamma ray range is slated to carry novel focusing telescopes based on the use of depth graded multilayer reflectors. Current design studies show that, at the foreseen focal lengths, it should be feasible to focus X-rays at energies as high as 300 keV. These designs use extrapolations of theoretical and experimentally determined optical constants below 100 keV. We have previously shown that determining the optical constants from traditional single layer film above 40 keV is very difficult. One needs to have substrates which are very flat and it is very important to know the exact flatness. In this paper we report on the experimental determination of optical constants up to and above 130 keV using substrates with sub arcsecond flatness. We present these results as obtained at the National Synchrotron Light Source in Brookhaven and compare these to theoretically calculated values and previous experiments.
机译:未来将在硬X射线/软伽玛射线范围内运行的天体物理学任务将基于深度渐变多层反射镜的使用,携带新型聚焦望远镜。当前的设计研究表明,在可预见的焦距下,将X射线聚焦在300keV的能量上应该是可行的。这些设计使用理论和实验确定的低于100 keV的光学常数的外推法。先前我们已经表明,要从高于40 keV的传统单层薄膜确定光学常数非常困难。人们需要具有非常平坦的基板,知道确切的平坦度非常重要。在本文中,我们报告了使用亚弧秒平整度的基板对130 keV及以上的光学常数进行的实验确定。我们介绍了从布鲁克海文国家同步加速器光源获得的这些结果,并将这些结果与理论计算的值和先前的实验进行了比较。

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