首页> 外文期刊>Journal of Applied Crystallography >Neutron diffraction studies of a double-crystal(+n,–m) setting containing a fully asymmetric diffraction geometry of a bent perfect crystal with output beam expansion
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Neutron diffraction studies of a double-crystal(+n,–m) setting containing a fully asymmetric diffraction geometry of a bent perfect crystal with output beam expansion

机译:双晶体(+ n,–m)设置的中子衍射研究,包含具有输出光束扩展的弯曲完美晶体的完全不对称衍射几何

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摘要

The neutron diffraction properties of a double-crystal (+n,-m) setting, which contains a bent perfect Si(311) crystal in the fully asymmetric diffraction (FAD) geometry with output beam expansion and a bent perfect Si(220) crystal in the symmetric diffraction geometry, are presented. Generally, there are two possibilities for the FAD geometry: either with output beam compression or with output beam expansion. In this case, attention has been focused on the latter. The properties of the (+n,-m) double-bent-crystal arrangement of a bent perfect crystal FAD Si(311) geometry, in combination with a bent Si(220) crystal slab in the symmetric diffraction geometry, were studied. It was found that, after beam expansion, this FAD geometry can provide a monochromatic beam of rather large cross section but very small divergence.
机译:双晶(+ n,-m)设置的中子衍射特性,其中包含具有完全不对称衍射(FAD)几何形状且具有输出光束扩展的弯曲完美Si(311)晶体和弯曲完美Si(220)晶体提出了对称衍射几何学。通常,FAD几何有两种可能性:输出光束压缩或输出光束扩展。在这种情况下,注意力已经集中在后者上。研究了弯曲的完美晶体FAD Si(311)几何形状与弯曲的Si(220)晶体平板在对称衍射几何形状中的(+ n,-m)双弯曲晶体排列的特性。已经发现,在光束扩展之后,这种FAD几何形状可以提供具有相当大的横截面但是非常小的发散的单色光束。

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