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80 Gb/s WDM Communication System Based on Spectral Slicing of Continuum Generating by Chirped Pulse Propagation in Law Normal Dispersion Photonic Crystal Fiber

机译:法线正色散光子晶体光纤中基于Chi脉冲传播连续谱谱切片的80 Gb / s WDM通信系统

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In this paper, the combination of the initial positive chirp parameter of picosecond pulse, and the high non-linearity and low normal dispersion of photonic crystal fiber is studied to optimize the spectral flatness of continuum source for WDM system application. This continuum source is defined on the C-band of optical communication window and is capable of providing all the necessary channels after spectral slicing by an optical demultiplexer. If the initial source is delivered at repetition rate of 10 GHz, the obtained continuum allows to generate more than 32 channels spaced 100 GHz all centered at 1550 nm, where each channel is a pulses train has the same repetition rate than the initial source and suitable to modulate with modulation rate of 10 GHz to achieve data transfer rate of 10 Gb/s, the type of modulation format RZ-OOK was used for channels coding. In this context, the transmission chain of WDM communication system at 8.10 Gb/s is demonstrated.
机译:本文研究了皮秒脉冲的初始正线性rp参数,光子晶体光纤的高非线性和低法向色散的组合,以优化用于WDM系统的连续体光源的光谱平坦度。该连续体源在光通信窗口的C波段上定义,并且能够在由光解复用器进行频谱切片之后提供所有必要的通道。如果初始源以10 GHz的重复频率传送,则获得的连续谱允许生成32个间隔100 GHz的通道,所有通道都集中在1550 nm处,其中每个通道是一个脉冲序列,其重复率与初始源相同,并且合适为了以10 GHz的调制速率进行调制以实现10 Gb / s的数据传输速率,将调制格式RZ-OOK用于信道编码。在此背景下,展示了WDM通信系统在8.10 Gb / s的传输链。

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