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Multiparametric crystallography using the diversity of multiple scattering patterns for Bragg and diffuse waves. Method of standing diffuse waves

机译:多参数晶体学,使用布拉格和漫射波的多种散射模式的多样性。驻散波的方法

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摘要

The fundamentals of a new-generation crystallogra-phy developed by the authors, known as diffuse-dynamical multiparametric diffractometry (DDMD), are reviewed. Ko-valchuk and Kohn, in their classic paper "X-ray standing waves-a new method of studying the structure of crystals'' (Sov. Phys. Usp. 29 426 (1986)) provided theoretical and experimental justification for applying the method of X-ray standing waves to perfect crystals. The present paper discusses the results of extending their work to crystals with defects in which standing diffuse waves arise in addition to X-ray standing waves. The effect exerted by defects on the dynamical scatter-ing pattern then depends on the diffraction conditions, thus creating a new phenomenon that manifests itself in a widely diverse diffuse-dynamical picture inherently impossible for kinematical scattering. By adjusting the diffraction conditions, this allows modifying the Bragg and diffuse wave fields (from running to standing), and hence changing the character of the field interaction with the crystal, with the result that experi-ments can provide sufficiently many various scattering patterns for the problem of unique multiparametric diagnosis to be solved by treating the patterns collectively. Theoretical and experimental fundamentals of DDMD and the results of its practical application are discussed.
机译:作者研究了新一代晶体学的基本原理,即扩散动力学多参数衍射法(DDMD)。 Ko-valchuk和Kohn在其经典论文“ X射线驻波-一种研究晶体结构的新方法”(Sov。Phys。Usp。29 426(1986))中提供了应用该方法的理论和实验依据本文讨论了将其工作扩展到具有缺陷的晶体的结果,这些缺陷除了X射线驻波之外还产生驻波,缺陷对动态散射的影响然后,图案取决于衍射条件,从而产生一种新现象,这种现象表现在本质上无法进行运动散射的广泛多样的扩散动力学图中。通过调整衍射条件,可以修改布拉格和扩散波场(从运行到静止) ),因此改变了场与晶体相互作用的特性,结果是实验可以为晶体提供足够多的各种散射模式通过共同处理模式可以解决独特的多参数诊断难题。讨论了DDMD的理论和实验基础及其实际应用的结果。

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