首页> 外文期刊>Journal of Research of the National Institute of Standards and Technology >The Optics and Alignment of the Divergent Beam Laboratory X-ray Powder Diffractometer and its Calibration Using NIST Standard Reference Materials
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The Optics and Alignment of the Divergent Beam Laboratory X-ray Powder Diffractometer and its Calibration Using NIST Standard Reference Materials

机译:发散束实验室X射线粉末衍射仪的光学和对准及其使用NIST标准参考材料的校准

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摘要

The laboratory X-ray powder diffractometer is one of the primary analytical tools in materials science. It is applicable to nearly any crystalline material, and with advanced data analysis methods, it can provide a wealth of information concerning sample character. Data from these machines, however, are beset by a complex aberration function that can be addressed through calibration with the use of NIST Standard Reference Materials (SRMs). Laboratory diffractometers can be set up in a range of optical geometries; considered herein are those of Bragg-Brentano divergent beam configuration using both incident and diffracted beam monochromators. We review the origin of the various aberrations affecting instruments of this geometry and the methods developed at NIST to align these machines in a first principles context. Data analysis methods are considered as being in two distinct categories: those that use empirical methods to parameterize the nature of the data for subsequent analysis, and those that use model functions to link the observation directly to a specific aspect of the experiment. We consider a multifaceted approach to instrument calibration using both the empirical and model based data analysis methods. The particular benefits of the fundamental parameters approach are reviewed.
机译:实验室X射线粉末衍射仪是材料科学中的主要分析工具之一。它适用于几乎所有晶体材料,并具有先进的数据分析方法,可以提供有关样品特性的大量信息。但是,来自这些机器的数据会被复杂的像差功能所困扰,可以通过使用NIST标准参考材料(SRM)进行校准来解决。可以在各种光学几何形状中设置实验室衍射仪。这里考虑的是使用入射和衍射光束单色仪的布拉格-布伦塔诺发散光束配置的那些。我们回顾了影响这种几何形状的仪器的各种像差的起源,以及在NIST开发的将这些机器对准第一原理的方法。数据分析方法被认为分为两个不同的类别:使用经验方法来参数化数据性质以进行后续分析的方法,以及使用模型函数将观察结果直接链接到实验特定方面的方法。我们考虑使用基于经验和基于模型的数据分析方法对仪器进行校准的多方面方法。回顾了基本参数方法的特殊好处。

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