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High efficiency X-ray nanofocusing by the blazed stacking of binary zone plates

机译:由二元区板的膨胀堆叠高效X射线纳米焦点

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The focusing efficiency of binary Fresnel zone plate lenses is fundamentally limited and higher efficiency requires a multi step lens profile. To overcome the manufacturing problems of high resolution and high efficiency multistep zone plates, we investigate the concept of stacking two different binary zone plates in each other's optical near-field. We use a coarse zone plate with π phase shift and a double density fine zone plate with π/2 phase shift to produce an effective 4- step profile. Using a compact experimental setup with piezo actuators for alignment, we demonstrated 47.1% focusing efficiency at 6.5 keV using a pair of 500 μm diameter and 200 nm smallest zone width. Furthermore, we present a spatially resolved characterization method using multiple diffraction orders to identify manufacturing errors, alignment errors and pattern distortions and their effect on diffraction efficiency.
机译:二元菲涅耳区板透镜的聚焦效率基本上有限,效率更高需要多步透镜轮廓。 为了克服高分辨率和高效多步电区板材的制造问题,我们研究了彼此光学近场堆叠两个不同二元区板的概念。 我们使用具有π相移的粗区域板和具有π/ 2相移的双密度细区板,以产生有效的4步轮廓。 使用带有压电致动器的紧凑型实验装置进行对准,我们使用一对500μm直径和200nm最小区域宽度在6.5kev下展示了47.1%的聚焦效率。 此外,我们在使用多个衍射阶数呈现空间分辨的表征方法以识别制造错误,对准误差和模式失真及其对衍射效率的影响。

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