Chen Shuqing, Xie Zhiqiang, Ye Huapeng, Wang Xinrou, Guo Zhenghao, He Yanliang, Li Ying, Yuan Xiaocong, Fan Dianyuan
Institute of Microscale Optoelectronics, Shenzhen University, 518060, Shenzhen, China.
Guangdong Provincial Key Laboratory of Optical Information Materials and Technology & Institute of Electronic Paper Displays, South China Academy of Advanced Optoelectronics, South China Normal University, 510006, Guangzhou, China.
Light Sci Appl. 2021 Nov 2;10(1):222. doi: 10.1038/s41377-021-00667-7.
The emergence of cylindrical vector beam (CVB) multiplexing has opened new avenues for high-capacity optical communication. Although several configurations have been developed to couple/separate CVBs, the CVB multiplexer/demultiplexer remains elusive due to lack of effective off-axis polarization control technologies. Here we report a straightforward approach to realize off-axis polarization control for CVB multiplexing/demultiplexing based on a metal-dielectric-metal metasurface. We show that the left- and right-handed circularly polarized (LHCP/RHCP) components of CVBs are independently modulated via spin-to-orbit interactions by the properly designed metasurface, and then simultaneously multiplexed and demultiplexed due to the reversibility of light path and the conservation of vector mode. We also show that the proposed multiplexers/demultiplexers are broadband (from 1310 to 1625 nm) and compatible with wavelength-division-multiplexing. As a proof of concept, we successfully demonstrate a four-channel CVB multiplexing communication, combining wavelength-division-multiplexing and polarization-division-multiplexing with a transmission rate of 1.56 Tbit/s and a bit-error-rate of 10 at the receive power of -21.6 dBm. This study paves the way for CVB multiplexing/demultiplexing and may benefit high-capacity CVB communication.
柱面矢量光束(CVB)复用技术的出现为高容量光通信开辟了新途径。尽管已经开发了几种配置来耦合/分离柱面矢量光束,但由于缺乏有效的离轴偏振控制技术,柱面矢量光束复用器/解复用器仍然难以实现。在此,我们报告一种基于金属-介质-金属超表面实现柱面矢量光束复用/解复用离轴偏振控制的直接方法。我们表明,通过适当设计的超表面,柱面矢量光束的左旋和右旋圆偏振(LHCP/RHCP)分量通过自旋-轨道相互作用被独立调制,然后由于光路的可逆性和矢量模式的守恒性,同时进行复用和解复用。我们还表明,所提出的复用器/解复用器具有宽带特性(从1310至1625纳米),并且与波分复用兼容。作为概念验证,我们成功演示了一种四通道柱面矢量光束复用通信,将波分复用和偏振分复用相结合,在接收功率为-21.6分贝毫瓦时,传输速率为1.56太比特每秒,误码率为10。这项研究为柱面矢量光束复用/解复用铺平了道路,并可能有益于高容量柱面矢量光束通信。