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All-optical signal processing using semiconductor optical amplifiers for next generation optical networks

机译:使用半导体光放大器进行下一代光网络的全光信号处理

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摘要

This thesis details an experimental and simulation investigation of some novel all-optical signal processing techniques for future optical communication networks. These all-optical techniques include modulation format conversion, phase discrimination and clock recovery. The methods detailed in this thesis use the nonlinearities associated with semiconductor optical amplifiers (SOA) to manipulate signals in the optical domain. Chapter 1 provides an introduction into the work detailed in this thesis, discusses the increased demand for capacity in today’s optical fibre networks and finally explains why all-optical signal processing may be of interest for future optical networks. Chapter 2 discusses the relevant background information required to fully understand the all-optical techniques demonstrated in this thesis. Chapter 3 details some pump-probe measurement techniques used to calculate the gain and phase recovery times of a long SOA. A remarkably fast gain recovery is observed and the wavelength dependent nature of this recovery is investigated. Chapter 4 discusses the experimental demonstration of an all-optical modulation conversion technique which can convert on-off- keyed data into either duobinary or alternative mark inversion. In Chapter 5 a novel phase sensitive frequency conversion scheme capable of extracting the two orthogonal components of a quadrature phase modulated signal into two separate frequencies is demonstrated. Chapter 6 investigates a novel all-optical clock recovery technique for phase modulated optical orthogonal frequency division multiplexing superchannels and finally Chapter 7 provides a brief conclusion.
机译:本文详细介绍了一些用于未来光通信网络的新型全光信号处理技术的实验和仿真研究。这些全光技术包括调制格式转换,相位鉴别和时钟恢复。本文详细介绍的方法使用与半导体光放大器(SOA)相关的非线性来操纵光域中的信号。第1章介绍了本文中详细介绍的工作,讨论了当今光纤网络对容量的不断增长的需求,并最终解释了为什么全光信号处理可能对未来的光纤网络感兴趣。第2章讨论了充分理解本文所演示的全光学技术所需的相关背景信息。第3章详细介绍了一些泵浦探针测量技术,用于计算长SOA的增益和相位恢复时间。观察到非常快的增益恢复,并且研究了这种恢复的波长相关性质。第4章讨论了一种全光调制转换技术的实验演示,该技术可以将开关键数据转换为双二进制或替代标记反转。在第5章中,展示了一种新颖的相敏频率转换方案,该方案能够将正交相位调制信号的两个正交分量提取为两个单独的频率。第六章研究了一种用于相位调制光正交频分复用超级信道的新颖的全光时​​钟恢复技术,最后第七章提供了一个简短的结论。

著录项

  • 作者

    Power Mark J.;

  • 作者单位
  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 en
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