材料科学
太赫兹辐射
非线性系统
联轴节(管道)
实现(概率)
非线性光学
振幅
光电子学
光学
量子力学
物理
数学
统计
冶金
作者
Qing-Wei Wang,Xueqian Zhang,Quan Xu,Xi Feng,Yongchang Lu,Li Niu,Xieyu Chen,Eric Plum,Jianqiang Gu,Quanlong Yang,Ming Fang,Zhixiang Huang,Shuang Zhang,Jiaguang Han,Weili Zhang
标识
DOI:10.1002/adfm.202300639
摘要
Abstract Generation and manipulation of terahertz (THz) waves are of vital importance for advancing THz technology. Nonlinear metasurfaces allow effective integration of both processes into a single compact device. However, such existing THz devices commonly rely on utilizing a single meta‐atom, which has fixed THz generation properties and thus limits the range of achievable functionalities. Here, it is demonstrate how coupling between different meta‐atoms within the unit‐cell can be used as a degree of freedom for controlling nonlinear THz generation, where achiral coupling provides full control over the amplitude of the generated THz field, while chiral coupling makes the THz generation sensitive to the handedness of the pump polarization. In particular, chiral coupling allows the realization of multiplexed pump‐handedness‐selective nonlinear metasurfaces, which is illustrated experimentally by selectively generating THz beams with different orbital angular momentum with a single nonlinear metasurface. This approach provides opportunities for developing various integrated nonlinear THz devices.
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