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Automated Atom-By-Atom Three-Dimensional (3D) Reconstruction of Field Ion Microscopy Data

机译:现场离子显微镜数据的自动原子逐个原子三维(3D)重建

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摘要

An automated procedure has been developed for the reconstruction of field ion microscopy (FIM) data that maintains its atomistic nature. FIM characterizes individual atoms on the specimen's surface, evolving subject to field evaporation, in a series of two-dimensional (2D) images. Its unique spatial resolution enables direct imaging of crystal defects as small as single vacancies. To fully exploit FIM's potential, automated analysis tools are required. The reconstruction algorithm developed here relies on minimal assumptions and is sensitive to atomic coordinates of all imaged atoms. It tracks the atoms across a sequence of images, allocating each to its respective crystallographic plane. The result is a highly accurate 3D lattice-resolved reconstruction. The procedure is applied to over 2000 tungsten atoms, including ion-implanted planes. The approach is further adapted to analyze carbides in a steel matrix, demonstrating its applicability to a range of materials. A vast amount of information is collected during the experiment that can underpin advanced analyses such as automated detection of out of sequence events, subangstrom surface displacements and defects effects on neighboring atoms. These analyses have the potential to reveal new insights into the field evaporation process and contribute to improving accuracy and scope of 3D FIM and atom probe characterization.
机译:已经开发了一种自动化程序,用于重建现场离子显微镜(FIM)数据,该数据维护其原子性质。 FIM在一系列二维(2D)图像中,在样本的表面上表征样品表面上的单个原子,以现场蒸发而不断发展。其独特的空间分辨率使得能够直接成像作为单个空缺的小晶状体。为了充分利用FIM的潜力,需要自动分析工具。这里开发的重建算法依赖于最小的假设,并且对所有成像原子的原子坐标敏感。它横跨一系列图像追踪原子,分配各自的晶体平面。结果是一种高度准确的3D格子解决重建。该程序适用于2000多种钨原子,包括离子植入的平面。该方法进一步适于分析钢基质中的碳化物,证明其对一系列材料的适用性。在实验期间收集大量信息,该实验可以支撑高级分析,例如自动检测序列事件的自动检测,划分表面位移以及对相邻原子的缺陷效应。这些分析有可能揭示进入现场蒸发过程的新见解,并有助于提高3D FIM和原子探测表征的准确性和范围。

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