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The first prototype diamond monochromator at the Institut Laue-Langevin

机译:Laue-Langevin研究所的第一台原型钻石单色仪

摘要

We report on the performance of the first diamond neutron monochromator built at the ILL. It has been designed for the hot neutron diffractometer D9 with the aim of improving significantly the instrument performance in particular for short wavelengths in the 0.3-0.9 Å wavelength range. Diamond crystal plates with dimensions of 1.5 x 1.5 x 0.18 cm3 and an average mosaic spread of 0.15° have been synthesized at the University of Augsburg. They exhibited excellent neutron diffraction properties when examined on a neutron double-crystal test setup. Sufficiently thick diamond elements with a controlled mosaic spread of 0.25° have been obtained by stacking several of these crystals. First tests runs carried out at the ILL confirmed the predicted high reflectivity of the diamond stacks. The diamond prototype monochromator uses the (220) reflection in transmission geometry replacing the Cu (220) monochromator on D9 that has the same d-spacing. The final performance studies on D9 showed that the diamond device did not perform better than the original copper crystal. This unexpected result could be explained by significant optical aberrations caused by nonuniformities of both the angular and spatial mosaic distribution in the individual diamond crystals, as revealed by a detailed characterisation study using high-energy X-ray diffraction.
机译:我们报告了ILL生产的第一台钻石中子单色仪的性能。它是为热中子衍射仪D9设计的,目的是显着改善仪器性能,特别是对于0.3-0.9Å波长范围内的短波长。奥格斯堡大学已经合成了尺寸为1.5 x 1.5 x 0.18 cm3,平均镶嵌展度为0.15°的金刚石晶体板。当在中子双晶测试装置上检查时,它们表现出出色的中子衍射特性。通过堆叠这些晶体中的几个,已经获得了足够厚的钻石元素,其镶嵌扩展控制在0.25°。在ILL进行的首次测试确认了钻石叠层的预测高反射率。钻石原型单色仪在透射几何中使用(220)反射,替代了具有相同d间距的D9上的Cu(220)单色仪。在D9上进行的最终性能研究表明,金刚石装置的性能并不比原始铜晶体更好。如使用高能X射线衍射进行的详细表征研究所揭示的,此出乎意料的结果可以解释为由单个钻石晶体的角度和空间镶嵌分布的不均匀性引起的显着光学像差。

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