Recent advances in high-capacity free-space optical and radio-frequency communications using orbital angular momentum multiplexing

轨道角动量复用 多路复用 角动量 自由空间 物理 光通信 无线电频率 自由空间光通信 计算机科学 无线电通信 电信 电子工程 光学 电气工程 工程类 光的轨道角动量 总角动量 量子力学
作者
Alan E. Willner,Yongxiong Ren,Guodong Xie,Yan Yan,Long Li,Zhe Zhao,Jian Wang,Moshe Tur,Andreas F. Molisch,Solyman Ashrafi
出处
期刊:Philosophical Transactions of the Royal Society A [The Royal Society]
卷期号:375 (2087): 20150439-20150439 被引量:178
标识
DOI:10.1098/rsta.2015.0439
摘要

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'.

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