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范德华铁镓碲中厚度和场依赖的磁畴演化

Thickness- and Field-Dependent Magnetic Domain Evolution in van der Waals FeGaTe.

作者信息

Jin Shuaizhao, Wang Yiting, Zheng Haotian, Dong Shouzhe, Han Kun, Wang Zhan, Wang Guangcheng, Jiang Xingang, Wang Xiaolei, Hong Jiawang, Huang Houbing, Zhang Ying, Xia Tian-Long, Wang Xueyun

机构信息

School of Aerospace Engineering, Beijing Institute of Technology, Beijing 100081, China.

Beijing Key Laboratory of Optoelectronic Functional Materials & Micro-Nano Devices, Department of Physics, Renmin University of China, Beijing 100872, China.

出版信息

Nano Lett. 2024 May 8;24(18):5467-5473. doi: 10.1021/acs.nanolett.4c00496. Epub 2024 Apr 22.

Abstract

The discovery of room-temperature ferromagnetism in van der Waals (vdW) materials opens new avenues for exploring low-dimensional magnetism and its applications in spintronics. Recently, the observation of the room-temperature topological Hall effect in the vdW ferromagnet FeGaTe suggests the possible existence of room-temperature skyrmions, yet skyrmions have not been directly observed. In this study, real-space imaging was employed to investigate the domain evolution of the labyrinth and skyrmion structure. First, Néel-type skyrmions can be created at room temperature. In addition, the influence of flake thickness and external magnetic field (during field cooling) on both labyrinth domains and the skyrmion lattice is unveiled. Due to the competition between magnetic anisotropy and dipole interactions, the specimen thickness significantly influences the density of skyrmions. These findings demonstrate that FeGaTe can host room-temperature skyrmions of various sizes, opening up avenues for further study of magnetic topological textures at room temperature.

摘要

范德华(vdW)材料中室温铁磁性的发现为探索低维磁性及其在自旋电子学中的应用开辟了新途径。最近,在vdW铁磁体FeGaTe中观察到室温拓扑霍尔效应,这表明可能存在室温斯格明子,但尚未直接观察到斯格明子。在本研究中,采用实空间成像来研究迷宫状和斯格明子结构的畴演化。首先,在室温下可以产生奈尔型斯格明子。此外,还揭示了薄片厚度和外磁场(在场冷过程中)对迷宫畴和斯格明子晶格的影响。由于磁各向异性和偶极相互作用之间的竞争,样品厚度显著影响斯格明子的密度。这些发现表明,FeGaTe可以承载各种尺寸的室温斯格明子,为进一步研究室温下的磁性拓扑纹理开辟了道路。

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