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Structure of disordered materials studied by high-energy x-ray diffraction technique

机译:高能X射线衍射技术研究无序材料的结构

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With the arrival of the third generation of synchrotron sources and/or the introduction of advanced insertion devices (wigglers and undulators), the high energy (E > 50 keV) x-ray diffraction technique has become feasible, leading to new approaches in the quantitative study of the structure of disordered materials than was hither to available. Since we built the SPring-8 bending magnet beamline BL04B2 and two-axis diffractometer for disordered materials in 1999, we have studied on disordered materials from ambient to extreme condition. In this article, the high-energy x-ray diffraction beamline BL04B2 of SPring-8 and recent developments of ancillary equipment (automatic sample changer, conventional high-temperature furnace, aerodynamic levitation furnace) are introduced. Furthermore the structural analysis on the basis of diffraction data with the aid of computer simulations, which we performed in the last 10 years is reviewed.
机译:随着第三代同步加速器源的到来和/或高级插入装置(摆动器和波荡器)的引入,高能(E> 50 keV)x射线衍射技术变得可行,从而导致了定量分析的新方法。研究无序材料的结构,这是迄今为止所没有的。自从1999年我们为不规则材料建造了SPring-8弯曲磁体光束线BL04B2和两轴衍射仪以来,我们已经对从环境到极端条件的不规则材料进行了研究。本文介绍了SPring-8的高能X射线衍射光束线BL04B2和辅助设备(自动进样器,常规高温炉,气动悬浮炉)的最新发展。此外,回顾了我们在过去10年中借助计算机模拟在衍射数据的基础上进行的结构分析。

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