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Slow and fast light using quantum-dot and quantum-well semiconductor optical amplifiers.

机译:使用量子点和量子阱半导体光学放大器的慢速和快光。

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摘要

Controlling the group velocity of light has great potential applications in future optical communication, photonic computing, and microwave signal processing. These applications have recently triggered immense experimental and theoretical interest in the research community. Numerous studies report large optical delays while sacrificing many important aspects of engineering feasibility: bandwidth, device compactness, room temperature operation, ease of integration, and minimized signal insertion loss. Slow and fast light in the quantum-dot and quantum-well semiconductor optical amplifiers (SOAs) address many of these characteristics. First, this dissertation presents variable slow light in quantum-dot SOAs using population oscillation in an absorptive medium. Bandwidth tuning of slow light is observed with forward and reverse bias of quantum-dots. Second, the study explores four-wave mixing and population oscillation in a quantum-well gain medium. Control of optical advance and bandwidth is achieved by the medium's electrical bias or the optical pump power. Moreover, the fast light in the cascade of N number of quantum-well SOAs is experimentally and theoretically investigated. The cascaded scheme uses SOA-to-SOA attenuators to achieve active delay-bandwidth control. Finally, a large delay-bandwidth scheme is presented in which slow-to-fast light is observed by means of absorption to gain switching. More than a half cycle of tunable delay at 1 GHz bandwidth is achieved at optical frequencies.
机译:控制光的群速度在未来的光通信,光子计算和微波信号处理中具有巨大的潜在应用。这些应用最近在研究界引起了巨大的实验和理论兴趣。大量研究报告称,光学延迟较大,同时又牺牲了工程可行性的许多重要方面:带宽,设备紧凑性,室温操作,易于集成以及将信号插入损耗降至最低。量子点和量子阱半导体光放大器(SOA)中的慢光和快光解决了许多这些特性。首先,本文利用吸收介质中的种群振荡提出了量子点SOA中的可变慢光。通过量子点的正向和反向偏置可以观察到慢光的带宽调整。其次,研究探索了量子阱增益介质中的四波混频和总体振荡。通过介质的电偏置或光泵浦功率来控制光的前进和带宽。此外,在实验上和理论上研究了N个量子阱SOA级联中的快光。级联方案使用SOA到SOA衰减器来实现主动延迟带宽控制。最后,提出了一个大的延迟带宽方案,其中通过吸收到增益切换来观察从慢到快的光。在光频率下,在1 GHz带宽上可调谐延迟超过半个周期。

著录项

  • 作者

    Kondratko, Piotr Konrad.;

  • 作者单位

    University of Illinois at Urbana-Champaign.;

  • 授予单位 University of Illinois at Urbana-Champaign.;
  • 学科 Engineering Electronics and Electrical.;Physics Optics.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 112 p.
  • 总页数 112
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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