多路复用
物理
光学
正常模式
旋涡
光纤
光载波传输速率
谐振器
涡流
模式音量
单模光纤
极化(电化学)
保偏光纤
电信
光纤传感器
声学
计算机科学
振动
光纤无线电
梁(结构)
化学
物理化学
热力学
作者
Jun Liu,Shimao Li,Long Zhu,Wang Andong,Shi Chen,Charalambos Klitis,Cheng Du,Qi Mo,Marc Sorel,Siyuan Yu,Xinlun Cai,Jian Wang
摘要
Spatial modes have received substantial attention over the last decades and are used in optical communication applications. In fiber-optic communications, the employed linearly polarized modes and phase vortex modes carrying orbital angular momentum can be synthesized by fiber vector eigenmodes. To improve the transmission capacity and miniaturize the communication system, straightforward fiber vector eigenmode multiplexing and generation of fiber-eigenmode-like polarization vortices (vector vortex modes) using photonic integrated devices are of substantial interest. Here, we propose and demonstrate direct fiber vector eigenmode multiplexing transmission seeded by integrated optical vortex emitters. By exploiting vector vortex modes (radially and azimuthally polarized beams) generated from silicon microring resonators etched with angular gratings, we report data-carrying fiber vector eigenmode multiplexing transmission through a 2-km large-core fiber, showing low-level mode crosstalk and favorable link performance. These demonstrations may open up added capacity scaling opportunities by directly accessing multiple vector eigenmodes in the fiber and provide compact solutions to replace bulky diffractive optical elements for generating various optical vector beams.
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