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Fabrication of Wedged Multilayer Laue Lenses

机译:楔形多层劳埃透镜的制作

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摘要

We present a new method to fabricate wedged multilayer Laue lenses, in which the angle of diffracting layers smoothly varies in the lens to achieve optimum diffracting efficiency across the entire pupil of the lens. This was achieved by depositing a multilayer onto a flat substrate placed in the penumbra of a straight-edge mask. The distance between the mask and the substrate was calibrated and the multilayer Laue lens was cut in a position where the varying layer thickness and the varying layer tilt simultaneously satisfy the Fresnel zone plate condition and Bragg’s law for all layers in the stack. This method can be used to extend the achievable numerical aperture of multilayer Laue lenses to reach considerably smaller focal spot sizes than achievable with lenses composed of parallel layers.
机译:我们提出了一种制造楔形多层劳厄透镜的新方法,其中衍射层的角度在透镜中平滑变化,从而在整个透镜的整个光瞳上实现最佳的衍射效率。这是通过将多层沉积到放置在直边掩模半影中的平坦基板上实现的。校准掩模和基板之间的距离,并在层叠的所有层的变化的层厚度和变化的层倾斜度同时满足菲涅耳波带片条件和布拉格定律的位置切割多层劳厄透镜。该方法可用于扩展多层劳厄透镜的可实现数值孔径,以达到比由平行层组成的透镜可实现的焦点尺寸小得多的焦点尺寸。

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