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Optical signal processing using traveling-wave electroabsorption modulators.

机译:使用行波电吸收调制器的光信号处理。

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摘要

Internet traffic is expected to increase by a thousand times in the next ten years, which poses a severe challenge to the present optical transport network. To scale for future traffic, the optical network needs to handle higher data-rates while offer more flexibility. The most promising solution is a network based on the mixing of optical time-division multiplexing (OTDM), wavelength-division multiplexing (WDM), and photonic cross-connect (PXC) technologies that involve optical signal processing in the time, wavelength and space domains. At the same time, these technologies are required to achieve higher performance with lower cost and smaller size.; The goal of this dissertation is to meet the demands of future optical networks by developing compact and high-performance optoelectronic sub-systems using traveling-wave electroabsorption modulators (TW-EAMs). The optical signal processing capabilities studied in this dissertation include demultiplexing, add-drop multiplexing, and clock recovery for OTDM and wavelength conversion and 3-R regeneration for WDM. To ensure that the proposed approaches meet the demands in speed and functionality with the least amount of complication, the unique properties of the TW-EAM are explored and utilized in full to provide novel solutions. These properties include (1) the distributed effect due to the traveling-wave electrodes; (2) the photocurrent signal generated inside the device; (3) the nonlinear electro-optical transfer function of the TW-EAM; and (4) the integrability with other optoelectronic devices. Many resulting sub-systems have reached record operation speed and compactness. For example, the first 160-Gb/s OTDM add-drop multiplexing with a 40-Gb/s base-rate was demonstrated with TW-EAMs operated in the standing-wave enhanced mode, which is one of the new inventions proposed in this dissertation. Less than 1-dB of power penalty was achieved for all operations. On the other hand, a very compact optical 3-R regenerator was demonstrated by incorporating three essential functions (clock recovery, pulse generation, and nonlinear gating) into a single TW-EAM through the utilization of unique properties of the device. In addition, extensive numerical simulations are presented throughout the dissertation to model and study the proposed concepts.
机译:预计在未来十年中,互联网流量将增加千倍,这对当前的光传输网络构成了严峻的挑战。为了扩展将来的流量,光网络需要处理更高的数据速率,同时提供更大的灵活性。最有前途的解决方案是基于光时分多路复用(OTDM),波分多路复用(WDM)和光子交叉连接(PXC)技术混合的网络,该技术涉及在时间,波长和空间中的光信号处理域。同时,要求这些技术以较低的成本和较小的尺寸实现更高的性能。本文的目的是通过开发使用行波电吸收调制器(TW-EAM)的紧凑型高性能光电子系统来满足未来光网络的需求。本文研究的光信号处理能力包括OTDM的解复用,分插复用,时钟恢复以及WDM的波长转换和3-R再生。为了确保所提出的方法能够以最少的复杂性满足速度和功能性的要求,对TW-EAM的独特属性进行了探索并充分利用以提供新颖的解决方案。这些特性包括:(1)由于行波电极而产生的分布效应; (2)装置内部产生的光电流信号; (3)TW-EAM的非线性电光传递函数; (4)与其他光电设备的集成性。许多产生的子系统达到了创纪录的运行速度和紧凑性。例如,使用在驻波增强模式下运行的TW-EAM演示了第一个以40 Gb / s基本速率进行的160 Gb / s OTDM分插复用,这是在此提出的新发明之一论文。所有操作的功率损失均小于1 dB。另一方面,通过利用设备的独特性能,将三个基本功能(时钟恢复,脉冲生成和非线性门控)纳入单个TW-EAM中,展示了一种非常紧凑的光学3-R再生器。此外,本文还通过大量的数值模拟对所提出的概念进行建模和研究。

著录项

  • 作者

    Chou, Hsu-Feng.;

  • 作者单位

    University of California, Santa Barbara.;

  • 授予单位 University of California, Santa Barbara.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 334 p.
  • 总页数 334
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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