Weyl半金属
物理
磁化
二极管
二次谐波产生
节点(物理)
凝聚态物理
非线性系统
非线性光学
拓扑(电路)
光电子学
半金属
磁场
光学
激光器
量子力学
电气工程
工程类
带隙
作者
Christian Tzschaschel,Jian-Xiang Qiu,Xue-Jian Gao,Hou-Chen Li,Chunyu Guo,Hung‐Yu Yang,Cheng-Ping Zhang,Ying-Ming Xie,Yufei Liu,Anyuan Gao,Damien Bérubé,Thao Dinh,Sheng-Chin Ho,Yuqiang Fang,Fuqiang Huang,Johanna Nordlander,Qiong Ma,Fazel Tafti,Philip J. W. Moll,K. T. Law
标识
DOI:10.1038/s41467-024-47291-8
摘要
Diode effects are of great interest for both fundamental physics and modern technologies. Electrical diode effects (nonreciprocal transport) have been observed in Weyl systems. Optical diode effects arising from the Weyl fermions have been theoretically considered but not probed experimentally. Here, we report the observation of a nonlinear optical diode effect (NODE) in the magnetic Weyl semimetal CeAlSi, where the magnetization introduces a pronounced directionality in the nonlinear optical second-harmonic generation (SHG). We demonstrate a six-fold change of the measured SHG intensity between opposite propagation directions over a bandwidth exceeding 250 meV. Supported by density-functional theory, we establish the linearly dispersive bands emerging from Weyl nodes as the origin of this broadband effect. We further demonstrate current-induced magnetization switching and thus electrical control of the NODE. Our results advance ongoing research to identify novel nonlinear optical/transport phenomena in magnetic topological materials and further opens new pathways for the unidirectional manipulation of light.
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