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Lumped time-delay compensation scheme for coding synchronization in the nonlinear spectral quantization-based all-optical analog-to-digital conversion

机译:基于非线性频谱量化的全光模数转换中编码同步的总时延补偿方案

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摘要

In this paper, we propose a novel lumped time-delay compensation scheme for the all-optical analog-to-digital conversion based on soliton self-frequency shift and optical interconnection techniques. By inserting a segment of negative dispersion fiber between the\udquantization and the coding module, the time delay of different quantized pulses can be accurately compensated with a simple structure compared to the multiple time-delay lines.\udThe simulation results show that the coding pulses can be well synchronized using a span of fiber, with the flattened negative dispersion within the wavelength range of 1558–1620 nm.\udIn addition, the problems of pulse broadening and time error are discussed, and it is shown that no damage happens to the coding correctness within the sampling rate of 30 GSa/s.
机译:本文提出了一种基于孤子自频移和光互连技术的全光模数转换集总时延补偿方案。通过在\量化和编码模块之间插入一段负色散光纤,与多个时延线相比,可以通过简单的结构来精确补偿不同量化脉冲的时间延迟。\ ud仿真结果表明,编码脉冲光纤跨距可以很好地同步,在1558–1620 nm波长范围内具有平坦的负色散。\ ud此外,还讨论了脉冲展宽和时间误差的问题,结果表明该光纤没有损坏。 30 GSa / s采样率内的编码正确性。

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