Fabrication and Diffraction Efficiency of a Large-format, Replicated X-Ray Reflection Grating

D. Miles, J. McCoy, R. McEntaffer, C. Eichfeld, G. Lavallee, M. Labella, W. Drawl, Bangzhi Liu, C. DeRoo, T. Steiner
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引用次数: 43

Abstract

We present the methodology used to fabricate an X-ray reflection grating and describe a technique for grating replication. Further, we present the experimental procedure and results of a study to measure the diffraction efficiency of a replicated X-ray reflection grating in an extreme off-plane geometry. The blazed grating demonstrates a total diffraction efficiency of ∼60% from 0.34 to 1.2 keV at a grazing angle of ∼1.°5, with single-order efficiency ranging from ∼35% to 65% for energies within the blaze envelope. The diffraction efficiency of the grating measured relative to the reflectivity of the metal coating averages ∼90% above 0.34 keV. Data collected as a function of beam position on the grating indicate a relative variation in total efficiency of <1% rms across the grating surface.
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大口径复制x射线反射光栅的制备及其衍射效率
我们提出了制作x射线反射光栅的方法,并描述了一种光栅复制技术。此外,我们还介绍了在极端离平面几何条件下测量复制x射线反射光栅衍射效率的实验过程和结果。在掠射角为~ 1时,燃烧光栅的总衍射效率为~ 60%,范围为0.34 ~ 1.2 keV。°5,火焰包线内能量的单阶效率范围为~ 35%至65%。相对于金属涂层的反射率,光栅的衍射效率在0.34 keV以上平均为~ 90%。作为光束在光栅上位置的函数所收集的数据表明,在光栅表面上总效率的相对变化<1% rms。
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