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850-nm hybrid fiber/free-space optical communications using orbital angular momentum modes

机译:使用轨道角动量模式的850nm混合光纤/自由空间光通信

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摘要

Light beams can carry orbital angular momentum (OAM) associated to the helicity of their phasefronts. These OAM modes can be employed to encode information onto a laser beam for transmitting not only in a fiber link but also in a free-space optical (FSO) one. Regarding this latter scenario, FSO communications are considered as an alternative and promising mean complementing the traditional optical communications in many applications where the use of fiber cable is not justified. This next generation FSO communication systems have attracted much interest recently, and the inclusion of beams carrying OAM modes can be seen as an efficient solution to increase the capacity and the security in the link. In this paper, we discuss an experimental demonstration of a proposal for next generation FSO communication system where a light beam carrying different OAM modes and affected by M turbulence is coupled to the multimode fiber link. In addition, we report a better and more robust behavior of higher order OAM modes when the intermodal dispersion is dominant in the fiber after exceeding its maximum range of operation.
机译:光束可以携带与其相前线的螺旋度相关的轨道角动量(OAM)。这些OAM模式可用于将信息编码到激光束上,以便不仅在光纤链路中而且在自由空间光学(FSO)中传输。对于后一种情况,FSO通信被认为是对许多不合理使用光缆的应用中的传统光通信进行补充和替代的有前途的手段。下一代FSO通信系统近来引起了人们的极大兴趣,并且包含承载OAM模式的波束可以看作是提高链路容量和安全性的有效解决方案。在本文中,我们讨论了针对下一代FSO通信系统的建议的实验演示,该系统将承载不同OAM模式并受M湍流影响的光束耦合到多模光纤链路。此外,当多模态色散在超过其最大工作范围后在光纤中占主导地位时,我们报告了更高阶OAM模式的更好且更鲁棒的行为。

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