自旋电子学
太赫兹辐射
卤化物
相干控制
光电子学
材料科学
金属
物理
凝聚态物理
光学
化学
铁磁性
激光器
无机化学
冶金
作者
Kankan Cong,Eric Vetter,Liang Yan,Yi Li,Qi Zhang,Yuzan Xiong,Hongwei Qu,Richard D. Schaller,Axel Hoffmann,A. F. Kemper,Yong‐Xin Yao,Jigang Wang,Wei You,Haidan Wen,Wei Zhang,Dali Sun
标识
DOI:10.1038/s41467-021-26011-6
摘要
Abstract Next-generation terahertz (THz) sources demand lightweight, low-cost, defect-tolerant, and robust components with synergistic, tunable capabilities. However, a paucity of materials systems simultaneously possessing these desirable attributes and functionalities has made device realization difficult. Here we report the observation of asymmetric spintronic-THz radiation in Two-Dimensional Hybrid Metal Halides (2D-HMH) interfaced with a ferromagnetic metal, produced by ultrafast spin current under femtosecond laser excitation. The generated THz radiation exhibits an asymmetric intensity toward forward and backward emission direction whose directionality can be mutually controlled by the direction of applied magnetic field and linear polarization of the laser pulse. Our work demonstrates the capability for the coherent control of THz emission from 2D-HMHs, enabling their promising applications on the ultrafast timescale as solution-processed material candidates for future THz emitters.
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