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Heterogeneous Transparent Optical Networking Based on Coded OAM Modulation

机译:基于编码OAM调制的异构透明光网络

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In this paper, we propose a coded orbital angular momentum (OAM)-based heterogeneous transparent optical networking scenario. The OAM is associated with the azimuthal phase dependence of the complex electric field. Because OAM eigenstates are orthogonal, they can be used as basis functions for multidimensional signal constellations. From Shannon's theory, we know that information capacity is a linear function of a number of dimensions and a logarithmic function of signal-to-noise ratio (SNR). Therefore, through multidimensional signal constellations, we can dramatically improve the overall aggregate data rate per single wavelength. The ability to generate the OAM modes, such as Bessel and Laguerre-Gaussian (LG) modes, in both multimode fibers (MMFs) and free-space optical (FSO) links will allow the realization of heterogeneous transparent FSO-fiber-optics communication networks, composed of MMF and FSO links, with ultrahigh bits-per-photon efficiencies. We perform Monte Carlo simulations to demonstrate the feasibility of the proposed heterogeneous optical networking scenario. We demonstrate the high potential of the proposed network to solve high-bandwidth demands and interoperability problems simultaneously. Finally, we prove that a dramatic improvement in spectral efficiency is possible by employing this OAM-based multidimensional signaling scheme.
机译:在本文中,我们提出了一种基于编码轨道角动量(OAM)的异构透明光网络方案。 OAM与复电场的方位角相位相关。因为OAM本征态是正交的,所以它们可以用作多维信号星座图的基础函数。根据香农的理论,我们知道信息容量是许多维度的线性函数,也是信噪比(SNR)的对数函数。因此,通过多维信号星座图,我们可以显着提高每个单个波长的总体聚合数据速率。在多模光纤(MMF)和自由空间光(FSO)链路中生成Bessel和Laguerre-Gaussian(LG)模式等OAM模式的能力将允许实现异构的透明FSO-光纤通信网络由MMF和FSO链接组成,具有超高的每光子位数效率。我们执行蒙特卡洛模拟以证明所提出的异构光网络场景的可行性。我们证明了拟议网络具有同时解决高带宽需求和互操作性问题的巨大潜力。最后,我们证明通过采用这种基于OAM的多维信令方案,可以显着提高频谱效率。

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