多路复用
角动量
宽带
光通信
轨道角动量复用
光学
千兆位
自由空间光通信
传输(电信)
物理
波分复用
计算机科学
旋涡
通信系统
电子工程
波长
光的轨道角动量
电信
工程类
总角动量
量子力学
作者
Heyun Tan,Junhong Deng,Ruizhe Zhao,Xiong Wu,Guixin Li,Lingling Huang,Jie Liu,Xinlun Cai
标识
DOI:10.1002/lpor.201800278
摘要
Abstract Optical vortex beams carrying orbital angular momentum (OAM) have received great attention since the 1990s. In particular, OAM offers an additional degree of freedom, thus, enabling boosting of data transmission capacity in communication systems. One of the major challenges of OAM‐based communication lies in multiplexing OAM via a kind of effective, compact, and flexible approach. Here, a novel approach to achieve the generation and combination of OAM beams by a pre‐engineered reflective metasurface chip is demonstrated. Compared to traditional methods of OAM generation, this approach shows superiorities of broadband operating wavelength, high mode purity, flexible design, and compact size. Moreover, a free‐space OAM multiplexing communication experiment based on the single metasurface is successfully carried out, performing 448 Gbit s −1 data transmission with four different topological charges of OAM and two polarizations by 28‐GBaud QPSK signals. This work experimentally demonstrates promising applications of the metasurface in high‐capacity optical communication systems.
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