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Investigation of channel spacing for Hermite-Gaussian mode division multiplexing in multimode fiber

机译:多模光纤中Hermite-Gaussian Mode Divice多路复用通道间距的调查

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Mode division multiplexing (MDM) may be used to increase the capacity of multimode fiber interconnects for data centers. This paper demonstrates the importance of controlling the channel spacing of a MDM system capitalizing on Hermite-Gaussian (HG) modes in order to mitigate modal dispersion and minimize the average system bit-error rate. The effect of channel spacing of a 25-channel hybrid MDM-wavelength division multiplexing (WDM) system was examined through the x-index and y-index separations of Hermite polynomials of HG modes for different MMF lengths. Simulations prove that by controlling the index separations of the Hermite polynomials, acceptable BER was achieved for 25Gb/s data transmission for a distance of 800 meters for a 25-channel HG-based MDM-WDM system at a center wavelength of 1550.12nm. The optimal x-index and y-index Hermite polynomial separations for the HG modes are 2, 3 and 4.
机译:模式分割多路复用(MDM)可用于提高数据中心的多模光纤互连的容量。本文展示了控制MDM系统的信道间距,以利用Hermite-Gaussian(HG)模式,以便减轻模态色散并最小化平均系统误码率。通过用于不同MMF长度的HMG模式的Hermite多项式的Hermite多项式的X型指数和Y折射率分离来检查25通道混合MDM波分复用(WDM)系统的信道间距的影响。模拟证明,通过控制Hermite多项式的指数分离,可以在1550.12nm的中心波长的基于25通道HG的MDM-WDM系统中实现25GB / S数据传输的可接受的BER。 HG模式的最佳X指数和Y型索引Hermite多项式分离为2,3和4。

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