Meng Yufei, Meng Fei, Hou Mingxuan, Zheng Qianqi, Wang Boyi, Zhu Ronggui, Feng Chun, Yu Guanghua
School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083, People's Republic of China.
J Phys Condens Matter. 2024 Feb 8;36(19). doi: 10.1088/1361-648X/ad2386.
Interfacial Dzyaloshinskii-Moriya interaction (i-DMI) exists in the film materials with inversion symmetry breaking, which can stabilize a series of nonlinear spin structures and control their chirality, such as Néel-type domain wall, magnetic skyrmion and spin spiral. In addition, the strength and chirality of i-DMI are directly related to the dynamic behavior of these nonlinear spin structures. Therefore, regulating the strength and chirality of i-DMI not only has an important scientific significance for enriching spintronics and topological physics, but also has a significant practical value for constructing a new generation of memorizer, logic gate, and brain-like devices with low-power. This review summarizes the research progress on the regulation of i-DMI in ferromagnetic films and provides some prospects for future research.
界面Dzyaloshinskii-Moriya相互作用(i-DMI)存在于具有反演对称性破缺的薄膜材料中,它可以稳定一系列非线性自旋结构并控制其手性,如尼尔型畴壁、磁斯格明子和自旋螺旋。此外,i-DMI的强度和手性与这些非线性自旋结构的动力学行为直接相关。因此,调节i-DMI的强度和手性不仅对丰富自旋电子学和拓扑物理学具有重要的科学意义,而且对构建新一代低功耗存储器、逻辑门和类脑器件具有重要的实用价值。本文综述了铁磁薄膜中i-DMI调控的研究进展,并对未来研究提出了一些展望。