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基于四个非球面镜的具有50纳米分辨率的硬X射线成像光学器件。

Hard-X-ray imaging optics based on four aspherical mirrors with 50 nm resolution.

作者信息

Matsuyama Satoshi, Kidani Naotaka, Mimura Hidekazu, Sano Yasuhisa, Kohmura Yoshiki, Tamasaku Kenji, Yabashi Makina, Ishikawa Tetsuya, Yamauchi Kazuto

机构信息

Department of Precision Science and Technology, Graduate School of Engineering, Osaka University, 2-1 Yamadaoka, Suita, Osaka 565-0871, Japan.

出版信息

Opt Express. 2012 Apr 23;20(9):10310-9. doi: 10.1364/OE.20.010310.

Abstract

Ultraprecise imaging optics, which consists of two sets of elliptical mirrors and hyperbolic mirrors aligned perpendicular to each other (i.e., advanced Kirkpatrick-Baez mirrrors), is developed to realize high-resolution and achromatic full-field hard-X-ray microscopy. Experiments to form a demagnified image (with horizontal and vertical demagnification factors of 385 and 210, respectively) are conducted to evaluate the optical system at an X-ray energy of 11.5 keV at SPring-8. Results show that the imaging system can form a demagnified image with nearly diffraction-limited resolutions of ~50 nm in the horizontal and vertical directions. The field of view is also experimentally estimated to be ~12 × ~14 μm(2) when used as a magnification imaging system.

摘要

超精密成像光学器件由两组相互垂直排列的椭圆镜和双曲线镜组成(即先进的柯克帕特里克-贝兹镜),旨在实现高分辨率和消色差全场硬X射线显微镜。在SPring-8进行了形成缩小图像(水平和垂直缩小因子分别为385和210)的实验,以在11.5 keV的X射线能量下评估该光学系统。结果表明,该成像系统能够在水平和垂直方向上形成分辨率接近50 nm的近衍射极限缩小图像。当用作放大成像系统时,通过实验估计其视场约为12×14μm²。

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