Zhang Hongrui, Raftrey David, Chan Ying-Ting, Shao Yu-Tsun, Chen Rui, Chen Xiang, Huang Xiaoxi, Reichanadter Jonathan T, Dong Kaichen, Susarla Sandhya, Caretta Lucas, Chen Zhen, Yao Jie, Fischer Peter, Neaton Jeffrey B, Wu Weida, Muller David A, Birgeneau Robert J, Ramesh Ramamoorthy
Department of Materials Science and Engineering, University of California, Berkeley, Berkeley, CA, USA.
Materials Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, CA, USA.
Sci Adv. 2022 Mar 25;8(12):eabm7103. doi: 10.1126/sciadv.abm7103. Epub 2022 Mar 23.
Novel magnetic ground states have been stabilized in two-dimensional (2D) magnets such as skyrmions, with the potential next-generation information technology. Here, we report the experimental observation of a Néel-type skyrmion lattice at room temperature in a single-phase, layered 2D magnet, specifically a 50% Co-doped FeGeTe (FCGT) system. The thickness-dependent magnetic domain size follows Kittel's law. The static spin textures and spin dynamics in FCGT nanoflakes were studied by Lorentz electron microscopy, variable-temperature magnetic force microscopy, micromagnetic simulations, and magnetotransport measurements. Current-induced skyrmion lattice motion was observed at room temperature, with a threshold current density, = 1 × 10 A/cm. This discovery of a skyrmion lattice at room temperature in a noncentrosymmetric material opens the way for layered device applications and provides an ideal platform for studies of topological and quantum effects in 2D.
新型磁基态已在诸如斯格明子等二维(2D)磁体中得以稳定,具有应用于下一代信息技术的潜力。在此,我们报告了在室温下于单相层状二维磁体,具体而言是50%钴掺杂的FeGeTe(FCGT)体系中对奈尔型斯格明子晶格的实验观测。与厚度相关的磁畴尺寸遵循基特尔定律。通过洛伦兹电子显微镜、变温磁力显微镜、微磁模拟和磁输运测量研究了FCGT纳米薄片中的静态自旋纹理和自旋动力学。在室温下观测到了电流诱导的斯格明子晶格运动,其阈值电流密度(j_c = 1×10^6)A/cm²。在非中心对称材料中室温下发现斯格明子晶格为层状器件应用开辟了道路,并为二维拓扑和量子效应的研究提供了理想平台。