自旋电子学
磁化
磁性
材料科学
凝聚态物理
铁磁性
切换时间
磁场
光电子学
物理
量子力学
作者
Peiyao Zhang,Ting‐Fung Chung,Quanwei Li,Siqi Wang,Qingjun Wang,Warren L. B. Huey,Sui Yang,Joshua E. Goldberger,Jie Yao,Xiang Zhang
出处
期刊:Nature Materials
[Nature Portfolio]
日期:2022-09-15
卷期号:21 (12): 1373-1378
被引量:67
标识
DOI:10.1038/s41563-022-01354-7
摘要
Control of magnetism has attracted interest in achieving low-power and high-speed applications such as magnetic data storage and spintronic devices. Two-dimensional magnets allow for control of magnetic properties using the electric field, electrostatic doping and strain. In two-dimensional atomically thin magnets, a non-volatile all-optical method would offer the distinct advantage of switching magnetic states without application of an external field. Here, we demonstrate such all-optical magnetization switching in the atomically thin ferromagnetic semiconductor, CrI3, triggered by circularly polarized light pulses. The magnetization switching behaviour strongly depends on the exciting photon energy and polarization, in correspondence with excitonic transitions in CrI3, indicating that the switching process is related to spin angular momentum transfer from photoexcited carriers to local magnetic moments. Such an all-optical magnetization switching should allow for further exploration of magneto-optical interactions and open up applications in high-speed and low-power spintronic devices.
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