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弯曲晶体的X射线聚焦:晶体透镜方程和动力学衍射理论预测的焦点位置。

X-ray focusing by bent crystals: focal positions as predicted by the crystal lens equation and the dynamical diffraction theory.

作者信息

Guigay Jean Pierre, Sanchez Del Rio Manuel

机构信息

European Synchrotron Radiation Facility, 71 Avenue des Martyrs, F-38000 Grenoble, France.

出版信息

J Synchrotron Radiat. 2022 Jan 1;29(Pt 1):148-158. doi: 10.1107/S1600577521012480.

Abstract

The location of the beam focus when monochromatic X-ray radiation is diffracted by a thin bent crystal is predicted by the `crystal lens equation'. This equation is derived in a general form valid for Bragg and Laue geometries. It has little utility for diffraction in Laue geometry. The focusing effect in the Laue symmetrical case is discussed using concepts of dynamical theory and an extension of the lens equation is proposed. The existence of polychromatic focusing is considered and the feasibility of matching the polychromatic and monochromatic focal positions is discussed.

摘要

当单色X射线辐射被薄弯曲晶体衍射时,光束焦点的位置由“晶体透镜方程”预测。该方程以适用于布拉格和劳厄几何结构的一般形式推导得出。它在劳厄几何结构的衍射中用途不大。使用动力学理论的概念讨论了劳厄对称情况下的聚焦效应,并提出了透镜方程的扩展形式。考虑了多色聚焦的存在,并讨论了使多色和单色焦点位置匹配的可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aed0/8733985/40c886187117/s-29-00148-fig1.jpg

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