Willner Alan E, Ren Yongxiong, Xie Guodong, Yan Yan, Li Long, Zhao Zhe, Wang Jian, Tur Moshe, Molisch Andreas F, Ashrafi Solyman
Department of Electrical Engineering, University of Southern California, Los Angeles, CA 90089, USA
Department of Electrical Engineering, University of Southern California, Los Angeles, CA 90089, USA.
Philos Trans A Math Phys Eng Sci. 2017 Feb 28;375(2087). doi: 10.1098/rsta.2015.0439.
There is a continuing growth in the demand for data bandwidth, and the multiplexing of multiple independent data streams has the potential to provide the needed data capacity. One technique uses the spatial domain of an electromagnetic (EM) wave, and space division multiplexing (SDM) has become increasingly important for increased transmission capacity and spectral efficiency of a communication system. A subset of SDM is mode division multiplexing (MDM), in which multiple orthogonal beams each on a different mode can be multiplexed. A potential modal basis set to achieve MDM is to use orbital angular momentum (OAM) of EM waves. In such a system, multiple OAM beams each carrying an independent data stream are multiplexed at the transmitter, propagate through a common medium and are demultiplexed at the receiver. As a result, the total capacity and spectral efficiency of the communication system can be multiplied by a factor equal to the number of transmitted OAM modes. Over the past few years, progress has been made in understanding the advantages and limitations of using multiplexed OAM beams for communication systems. In this review paper, we highlight recent advances in the use of OAM multiplexing for high-capacity free-space optical and millimetre-wave communications. We discuss different technical challenges (e.g. atmospheric turbulence and crosstalk) as well as potential techniques to mitigate such degrading effects.This article is part of the themed issue 'Optical orbital angular momentum'.
对数据带宽的需求持续增长,多个独立数据流的复用有潜力提供所需的数据容量。一种技术利用电磁波(EM)的空间域,并且空分复用(SDM)对于提高通信系统的传输容量和频谱效率变得越来越重要。SDM的一个子集是模分复用(MDM),其中可以复用每个处于不同模式的多个正交光束。实现MDM的一种潜在模态基集是使用电磁波的轨道角动量(OAM)。在这样的系统中,每个携带独立数据流的多个OAM光束在发射机处复用,通过公共介质传播并在接收机处解复用。结果,通信系统的总容量和频谱效率可以乘以等于发射的OAM模式数量的因子。在过去几年中,在理解将复用的OAM光束用于通信系统的优点和局限性方面取得了进展。在这篇综述论文中,我们重点介绍了将OAM复用用于高容量自由空间光通信和毫米波通信的最新进展。我们讨论了不同的技术挑战(例如大气湍流和串扰)以及减轻此类降级效应的潜在技术。本文是主题为“光学轨道角动量”的特刊的一部分。