通过中程有序变化探索非晶态铍钴合金的结构各向异性

IF 2.9 4区 工程技术 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY
Ellis Kennedy, Emily Hollingworth, Alejandro Ceballos, Daisy O'Mahoney, Colin Ophus, Frances Hellman, Mary Scott
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引用次数: 0

摘要

通过磁控共溅射技术生长的无定形薄膜会随着生长和退火温度的变化而发生原子结构的变化。结构变化会影响薄膜的体积特性。在透射电子显微镜(TEM)中对在一定温度范围内沉积的非晶 Tb17Co83(a-Tb-Co)薄膜进行扫描纳米衍射,以测量中程有序性(MRO)的相对变化。这些测量结果表明,生长温度越高,MRO 越高;退火温度越高,MRO 越低。MRO 的变化趋势表明了生长条件与局部原子有序之间的关系。通过倾斜选定的薄膜,TEM 可以测量薄膜内局部原子结构的变化,这种变化是薄膜内取向的函数。研究结果支持以下说法,即沿生长方向的优先有序是沉积过程中温度介导的原子构型的结果,而取向 MRO 与结构各向异性的增加相关,从而解释了稀土过渡金属薄膜中由生长引起的强烈垂直磁各向异性。除了磁性薄膜之外,我们还提出了倾斜有限元工作流程作为一种方法,用于提取具有方向依赖性块体特性的各种非晶材料中的各向异性结构信息,例如通过物理气相沉积生长的具有固有键合不对称性的薄膜。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exploring Structural Anisotropy in Amorphous Tb-Co via Changes in Medium-Range Ordering.

Amorphous thin films grown by magnetron co-sputtering exhibit changes in atomic structure with varying growth and annealing temperatures. Structural variations influence the bulk properties of the films. Scanning nanodiffraction performed in a transmission electron microscope (TEM) is applied to amorphous Tb17Co83 (a-Tb-Co) films deposited over a range of temperatures to measure relative changes in medium-range ordering (MRO). These measurements reveal an increase in MRO with higher growth temperatures and a decrease in MRO with higher annealing temperatures. The trend in MRO indicates a relationship between the growth conditions and local atomic ordering. By tilting select films, the TEM measures variations in the local atomic structure as a function of orientation within the films. The findings support claims that preferential ordering along the growth direction results from temperature-mediated adatom configurations during deposition, and that oriented MRO correlates with increased structural anisotropy, explaining the strong growth-induced perpendicular magnetic anisotropy found in rare earth-transition metal films. Beyond magnetic films, we propose the tilted FEM workflow as a method of extracting anisotropic structural information in a variety of amorphous materials with directionally dependent bulk properties, such as films with inherent bonding asymmetry grown by physical vapor deposition.

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来源期刊
Microscopy and Microanalysis
Microscopy and Microanalysis 工程技术-材料科学:综合
CiteScore
1.10
自引率
10.70%
发文量
1391
审稿时长
6 months
期刊介绍: Microscopy and Microanalysis publishes original research papers in the fields of microscopy, imaging, and compositional analysis. This distinguished international forum is intended for microscopists in both biology and materials science. The journal provides significant articles that describe new and existing techniques and instrumentation, as well as the applications of these to the imaging and analysis of microstructure. Microscopy and Microanalysis also includes review articles, letters to the editor, and book reviews.
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