Prospect for detecting magnetism in two-dimensional perovskite oxides by electron magnetic circular dichroism

IF 2.5 3区 工程技术 Q1 MICROSCOPY Micron Pub Date : 2024-09-16 DOI:10.1016/j.micron.2024.103718
Jie Ren , Xiaoyan Zhong
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Abstract

Two-dimensional (2D) magnets, especially strongly correlated 2D transition-metal perovskite oxides, have attracted significant attention due to their intriguing electromagnetic properties for potential applications in spintronic devices. Potentially electron magnetic circular dichroism (EMCD) under zone axis conditions can provide three-dimensional components of magnetic moments in 2D materials, but the collection efficiency and the signal-to-noise ratio for out-of-plane (OOP) components is limited due to the limited collection angle. Here we conducted a comprehensive computational simulation to optimize the experimental setting of EMCD for detecting the OOP components of magnetic moments in three beam conditions (3BCs) on 2D perovskite oxides La1-xSrxMnO3 (LSMO) in a TEM. The key parameters are sample thickness, accelerating voltage, Sr doping concentration, collection semi-angle and position, and sample orientation including systematic reflections excited and tilt angle. Our simulation results demonstrate that the relative dynamical diffraction coefficients of Mn OOP EMCD of LaMnO3 with a thickness ranging from 1 unit cell (uc) to 4 uc can be optimized in a 3BC with (110) systematic reflections excited and a relatively large collection semi-angle of 19 mrad at the relatively low accelerating voltage of 80 kV. In most cases, the relative dynamic diffraction coefficients for La1-xSrxMnO3 with the thickness ranging from 1 uc to 4 uc decrease with the increase of the Sr doping concentrations. The optimal tilt angle from a zone axis to a 3BC is 18° for the cases of the LSMO thickness of 2 uc, 3 uc and 4 uc, and 22° for the monolayer LSMO. Our work provides the theoretical simulation foundation for optimized EMCD experiments for measuring OOP components of magnetic moments in 2D transition-metal perovskite oxides.

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利用电子磁性圆二色性探测二维包晶氧化物磁性的前景
二维(2D)磁体,尤其是强相关的二维过渡金属包晶氧化物,因其潜在应用于自旋电子器件的迷人电磁特性而备受关注。区轴条件下的电子磁性圆二色性(EMCD)可以提供二维材料中磁矩的三维分量,但由于收集角度有限,面外分量的收集效率和信噪比受到限制。在此,我们进行了全面的计算模拟,以优化 EMCD 的实验设置,从而在 TEM 中检测三束条件(3BC)下二维包晶氧化物 La1-xSrxMnO3 (LSMO) 的磁矩 OOP 分量。关键参数包括样品厚度、加速电压、Sr 掺杂浓度、收集半角和位置,以及样品方向(包括激发的系统反射和倾斜角)。我们的模拟结果表明,在相对较低的加速电压(80 kV)下,厚度从 1 个晶胞(uc)到 4 个晶胞(uc)不等的 LaMnOOP EMCD 的相对动态衍射系数可以在 3BC 条件下进行优化,即激发 (110) 个系统反射和相对较大的收集半角(19 mrad)。在大多数情况下,厚度为 1 uc 至 4 uc 的 La1-xSrxMnO3 的相对动态衍射系数会随着 Sr 掺杂浓度的增加而降低。在 LSMO 厚度为 2 uc、3 uc 和 4 uc 的情况下,从区域轴到 3BC 的最佳倾斜角为 18°,而单层 LSMO 的最佳倾斜角为 22°。我们的工作为测量二维过渡金属包晶氧化物中磁矩的 OOP 分量的优化 EMCD 实验提供了理论模拟基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Micron
Micron 工程技术-显微镜技术
CiteScore
4.30
自引率
4.20%
发文量
100
审稿时长
31 days
期刊介绍: Micron is an interdisciplinary forum for all work that involves new applications of microscopy or where advanced microscopy plays a central role. The journal will publish on the design, methods, application, practice or theory of microscopy and microanalysis, including reports on optical, electron-beam, X-ray microtomography, and scanning-probe systems. It also aims at the regular publication of review papers, short communications, as well as thematic issues on contemporary developments in microscopy and microanalysis. The journal embraces original research in which microscopy has contributed significantly to knowledge in biology, life science, nanoscience and nanotechnology, materials science and engineering.
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