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Free-Space Optical Communications using Encoding of Data on Different Orbital-Angular-Momentum Modes

机译:使用不同轨道角动量模式的数据编码的自由空间光通信

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Free-space optical communications can play a significant role in line-of-sight links. In general, data can be encoded on the amplitude, phase, or temporal position of the optical wave. Importantly, there are environments for which ever-more information is desired for a given amount of optical energy. This can be accomplished if there are more degrees-of-freedom that the wave can occupy to provide higher energy efficiency for a given capacity (i.e., bits/photon). Traditionally, free-space optical links have used only a single beam, such that there was little opportunity for a wave to occupy more than one spatial location, thereby not allowing the spatial domain to be used for data encoding. Recently, space- and mode-multiplexing has been demonstrated to simultaneously transmit multiple data-carrying free-space beams. Each spatially overlapping mode was orthogonal to other modes and carried a unique amount of orbital-angular-momentum (OAM). In this paper, we consider that OAM modes could be a data-encoding domain, such that a beam could uniquely occupy one of many modes, i.e., 4 modes would provide 4 possible states and double the bits of information for the same amount of energy. In the past, such OAM-based encoding was shown at kHz data rates.We will present the architecture and experimental results for OAM-based data encoding for a free-space 1.55-μm data link under different system parameters. Key features of the results include: (a) encoding on several modes is accomplished using a fast switch, and (b) low bit-error-rates are achieved at >Gbit/s, which is orders-of-magnitude faster than previous results.
机译:自由空间光通信可以在视线链路中发挥重要作用。通常,可以在光波的幅度,相位或时间位置编码数据。重要的是,对于给定量的光能,存在需要更重要的信息的环境。如果存在更多的自由度,可以实现波可以占用以提供给定容量的更高的能量效率(即,位/光子)。传统上,自由空间光学链路仅使用单个光束,使得WAVE的机会很少占据一个以上的空间位置,从而不允许空间域用于数据编码。最近,已经证明了空间和模式多路复用以同时传输多个数据携带的自由空间波束。每个空间重叠模式与其他模式正交,并携带唯一的轨道角动量(OAM)。在本文中,我们认为OAM模式可以是数据编码域,使得光束可以唯一地占用许多模式中的一种,即4个模式将提供4个可能的状态,并为相同量的信息进行双倍信息。在过去,在kHz数据速率下示出了这种基于OAM的编码。我们将在不同的系统参数下为自由空间1.55-μm数据链路提供基于OAM的数据编码的架构和实验结果。结果的主要特征包括:(a)使用快速开关完成多种模式,并且(b)在> gbit / s处实现了低位误差率,这是比以前的结果快的顺序。

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