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首页> 外文期刊>Journal of synchrotron radiation >Tracing X-rays through an L-shaped laterally graded multilayer mirror: a synchrotron application
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Tracing X-rays through an L-shaped laterally graded multilayer mirror: a synchrotron application

机译:通过L形横向渐变多层镜跟踪X射线:同步加速器应用

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摘要

A theoretical model to trace X-rays through an L-shaped (nested or Montel Kirkpatrick–Baez mirrors) laterally graded multilayer mirror to be used in a synchrotron application is presented. The model includes source parameters (size and divergence), mirror figure (parabolic and elliptic), multilayer parameters (reflectivity, which depends on layer material, thickness and number of layers) and figure errors (slope error, roughness, layer thickness fluctuation d/d and imperfection in the corners). The model was implemented through MATLAB/OCTAVE scripts, and was employed to study the performance of a multilayer mirror designed for the analyzer system of an ultrahigh-resolution inelastic X-ray scattering spectrometer at National Synchrotron Light Source II. The results are presented and discussed.
机译:提出了通过同步辐射加速器应用中的L形(嵌套或Montel Kirkpatrick–Baez反射镜)横向渐变多层反射镜跟踪X射线的理论模型。该模型包括源参数(尺寸和散度),镜像(抛物线和椭圆形),多层参数(反射率,取决于层材料,厚度和层数)和图形误差(坡度误差,粗糙度,层厚度波动d / d和角落的瑕疵)。该模型是通过MATLAB / OCTAVE脚本实现的,并用于研究为国家同步加速器光源II的超高分辨率非弹性X射线散射光谱仪的分析仪系统设计的多层反射镜的性能。结果进行了介绍和讨论。

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