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透射电子显微镜中相互作用体积与衍射图样之间一种新的意外空间关系。

A New and Unexpected Spatial Relationship Between Interaction Volume and Diffraction Pattern in Electron Microscopy in Transmission.

作者信息

Brodu Etienne, Bouzy Emmanuel

机构信息

1Laboratoire d'Etude des Microstructures et de Mécanique des Matériaux (LEM3),Université de Lorraine,UMR CNRS 7239,57045 Metz,France.

出版信息

Microsc Microanal. 2018 Dec;24(6):634-646. doi: 10.1017/S1431927618015441. Epub 2018 Dec 5.

Abstract

The finding of this study is that the interaction volume in electron microscopy in transmission is well ordered laterally, with a remarkable and unexpected consequence being that lateral subsections of the interaction volume produce subsections of the Kikuchi diffraction pattern. It makes the microstructure of samples directly visible in Kikuchi patterns. This is first illustrated with polycrystalline Ti-10Al-25Nb with an on-axis transmission Kikuchi diffraction set-up in a scanning electron microscope. It is then shown via a Monte Carlo simulation and a large-angle convergent-beam electron diffraction experiment that this phenomenon finds its origin in the nature of the differential elastic and quasi-elastic cross sections. This phenomenon is then quantified by a careful image analysis of Kikuchi patterns recorded across a vertical interface in a silicon sample specifically designed and fabricated. A Monte Carlo simulation reproducing all the geometric parameters is conducted. Experiments and simulations match very well qualitatively, but with a slight quantitativity gap. The specificity of the thermal diffuse scattering cross-section, not available in the simulation, is thought to be responsible for this gap. Beside Kikuchi diffraction, the case of diffraction spots and diffuse background present in the pattern is also discussed.

摘要

本研究的发现是,透射电子显微镜中的相互作用体积在横向排列良好,一个显著且意想不到的结果是,相互作用体积的横向子部分会产生菊池衍射图案的子部分。这使得样品的微观结构在菊池图案中直接可见。首先用多晶Ti-10Al-25Nb在扫描电子显微镜中进行轴向透射菊池衍射设置来说明这一点。然后通过蒙特卡罗模拟和大角度会聚束电子衍射实验表明,这种现象源于微分弹性和准弹性截面的性质。然后通过对专门设计和制造的硅样品中垂直界面上记录的菊池图案进行仔细的图像分析来量化这种现象。进行了再现所有几何参数的蒙特卡罗模拟。实验和模拟在定性上非常吻合,但在定量上存在细微差距。模拟中没有的热漫散射截面的特殊性被认为是造成这种差距的原因。除了菊池衍射,还讨论了图案中存在的衍射斑点和漫射背景的情况。

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