Yabashi Makina, Tono Kensuke, Mimura Hidekazu, Matsuyama Satoshi, Yamauchi Kazuto, Tanaka Takashi, Tanaka Hitoshi, Tamasaku Kenji, Ohashi Haruhiko, Goto Shunji, Ishikawa Tetsuya
RIKEN SPring-8 Center, Kouto 1-1-1, Sayo, Hyogo 679-5148, Japan.
Japan Synchrotron Radiation Research Institute (JASRI), Kouto 1-1-1, Sayo, Hyogo 679-5198, Japan.
J Synchrotron Radiat. 2014 Sep;21(Pt 5):976-85. doi: 10.1107/S1600577514016415. Epub 2014 Aug 27.
Developments of X-ray optics for full utilization of diffraction-limited storage rings (DLSRs) are presented. The expected performance of DLSRs is introduced using the design parameters of SPring-8 II. To develop optical elements applicable to manipulation of coherent X-rays, advanced technologies on precise processing and metrology were invented. With propagation-based coherent X-rays at the 1 km beamline of SPring-8, a beryllium window fabricated with the physical-vapour-deposition method was found to have ideal speckle-free properties. The elastic emission machining method was utilized for developing reflective mirrors without distortion of the wavefronts. The method was further applied to production of diffraction-limited focusing mirrors generating the smallest spot size in the sub-10 nm regime. To enable production of ultra-intense nanobeams at DLSRs, a low-vibration cooling system for a high-heat-load monochromator and advanced diagnostic systems to characterize X-ray beam properties precisely were developed. Finally, new experimental schemes for combinative nano-analysis and spectroscopy realised with novel X-ray optics are discussed.
介绍了为充分利用衍射极限储存环(DLSRs)而开展的X射线光学技术进展。利用SPring-8 II的设计参数介绍了DLSRs的预期性能。为开发适用于相干X射线操控的光学元件,发明了精密加工和计量方面的先进技术。在SPring-8的1公里光束线上利用基于传播的相干X射线,发现采用物理气相沉积法制造的铍窗具有理想的无散斑特性。弹性发射加工方法被用于开发不产生波前畸变的反射镜。该方法进一步应用于生产在亚10纳米范围内产生最小光斑尺寸的衍射极限聚焦镜。为了在DLSRs上产生超强纳米束,开发了一种用于高热负载单色仪的低振动冷却系统以及用于精确表征X射线束特性的先进诊断系统。最后,讨论了利用新型X射线光学实现组合纳米分析和光谱学的新实验方案。