Multilayer Laue Lens: A Path Toward One Nanometer X-Ray Focusing

Hanfei Yan, H. Kang, R. Conley, Chian Liu, A. Macrander, G. Stephenson, J. Maser
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引用次数: 27

Abstract

The multilayer Laue lens (MLL) is a novel diffractive optic for hard X-ray nanofocusing, which is fabricated by thin film deposition techniques and takes advantage of the dynamical diffraction effect to achieve a high numerical aperture and efficiency. It overcomes two difficulties encountered in diffractive optics fabrication for focusing hard X-rays: (1) small outmost zone width and (2) high aspect ratio. Here, we will give a review on types, modeling approaches, properties, fabrication, and characterization methods of MLL optics. We show that a full-wave dynamical diffraction theory has been developed to describe the dynamical diffraction property of the MLL and has been employed to design the optimal shapes for nanofocusing. We also show a 16 nm line focus obtained by a partial MLL and several characterization methods. Experimental results show a good agreement with the theoretical calculations. With the continuing development of MLL optics, we believe that an MLL-based hard x-ray microscope with true nanometer resolution is on the horizon.
多层劳厄透镜:一种纳米x射线聚焦路径
多层劳厄透镜(MLL)是一种用于硬x射线纳米聚焦的新型衍射光学器件,它采用薄膜沉积技术制备,利用动态衍射效应实现高数值孔径和高效率。它克服了衍射光学制造中聚焦硬x射线时遇到的两个困难:(1)最外区宽度小和(2)宽高比大。在此,我们将对MLL光学的类型、建模方法、性质、制造和表征方法进行综述。我们提出了一种全波动态衍射理论来描述MLL的动态衍射特性,并用于设计纳米聚焦的最佳形状。我们还展示了通过部分MLL和几种表征方法获得的16 nm线焦点。实验结果与理论计算结果吻合较好。随着MLL光学技术的不断发展,我们相信一种基于MLL的、具有真正纳米分辨率的硬x射线显微镜即将问世。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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