Matsuyama Satoshi, Kidani Naotaka, Mimura Hidekazu, Sano Yasuhisa, Kohmura Yoshiki, Tamasaku Kenji, Yabashi Makina, Ishikawa Tetsuya, Yamauchi Kazuto
Department of Precision Science and Technology, Graduate School of Engineering, Osaka University, 2-1 Yamadaoka, Suita, Osaka 565-0871, Japan.
Opt Express. 2012 Apr 23;20(9):10310-9. doi: 10.1364/OE.20.010310.
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.
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。