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Multilayer Laue Lenses as High-Resolution X-ray Optics

机译:多层劳厄透镜作为高分辨率X射线光学器件

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Using Fresnel zone plates, a spatial resolution between 20 nm for soft x-rays and 70 nm for hard x-rays has been achieved. Improvement of the spatial resolution without loss of efficiency is difficult and incremental due to the fabrication challenges posed by the combination of small outermost zone width and high aspect ratios. We describe a novel approach for high-resolution x-ray focusing, a multilayer Laue lens (MLL). The MLL concept is a system of two crossed linear zone plates, manufactured by deposition techniques. The approach involves deposition of a multilayer with a graded period, sectioning it to the appropriate thickness, assembling the sections at the optimum angle, and using it in Laue geometry for focusing. The approach is particularly well suited for high-resolution focusing optics for use at high photon energy. We present a theory of the MLL using dynamic diffraction theory and Fourier optics.
机译:使用菲涅耳波带片,已经实现了对于软x射线的20nm和对于硬x射线的70nm之间的空间分辨率。由于最小的最外层区域宽度和高的纵横比的组合带来的制造挑战,在不损失效率的情况下提高空间分辨率是困难的并且是递增的。我们描述了一种高分辨率的X射线聚焦的新颖方法,多层劳厄透镜(MLL)。 MLL概念是由沉积技术制造的两个交叉的线性波带片的系统。该方法涉及以一定的周期沉积多层,将其切成适当的厚度,以最佳角度组装这些段,然后在劳厄几何学中将其用于聚焦。该方法特别适合用于高光子能量的高分辨率聚焦光学器件。我们提出了使用动态衍射理论和傅立叶光学的MLL理论。

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