拓扑量子数
旋涡
光学
涡流
光束
物理
角动量
稳健性(进化)
极化(电化学)
梁(结构)
空间光调制器
拓扑(电路)
几何相位
圆极化
波长
凝聚态物理
经典力学
微带线
量子力学
组合数学
基因
热力学
物理化学
生物化学
数学
化学
作者
Congling Liang,Qi Dai,Tian Huang,Hong‐Chao Liu,Zhiqiang Guan,Rao Fu,Jin Tao,Zile Li,Shaohua Yu,Guoxing Zheng
标识
DOI:10.1016/j.jmat.2023.09.013
摘要
Vortex light is a unique beam characterized by a spiral phase as it propagates. A fundamental parameter of vortex light is the topological charge, which determines the amount of angular momentum and plays a crucial role in tailoring its behavior. However, conventional measurement methods for determining the topological charge, such as those based on interference and phase modulation, tend to be intricate and complex. In this regard, a labeled vortex beam generator is proposed, composed of a metasurface with a single-celled configuration. When the metasurface is illuminated by light of the designed wavelength, the outgoing light exhibits a vortex structure. Furthermore, the topological charge numbers can be directly observed with distinct labeled patterns when the metasurface is placed in an orthogonal-polarized optical path. With advantages such as ultra-compactness, high robustness, and exceptional precision, the proposed metasurface exhibits significant potential for applications in optical communication, light manipulation, optical sensing, etc.
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