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High-speed modelocked semiconductor lasers and applications in coherent photonic systems.

机译:高速锁模半导体激光器及其在相干光子系统中的应用。

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摘要

1.55-mum high-speed modelocked semiconductor lasers are theoretically and experimentally studied for various coherent photonic system applications. The modelocked semiconductor lasers (MSLs) are designed with high-speed (>5 GHz) external cavity configurations utilizing monolithic two-section curved semiconductor optical amplifiers. By exploiting the saturable absorber section of the monolithic device, passive or hybrid mode-locking techniques are used to generate short optical pulses with broadband optical frequency combs. Laser frequency stability is improved by applying the Pound-Drever-Hall (PDH) frequency stabilization technique to the MSLs. The improved laser performance after the frequency stabilization (a frequency drifting of less than 350 MHz), is extensively studied with respect to the laser linewidth (∼ 3 MHz), the relative intensity noise (RIN) ( -150 dB/Hz), as well as the modal RIN (∼ 3 dB reduction). MSL to MSL, and tunable laser to MSL synchronization is demonstrated by using a dual-mode injection technique and a modulation sideband injection technique, respectively. Dynamic locking behavior and locking bandwidth are experimentally and theoretically studied. Stable laser synchronization between two MSLs is demonstrated with an injection seed power on the order of a few microwatt. Several coherent heterodyne detections based on the synchronized MSL systems are demonstrated for applications in microwave photonic links and ultra-dense wavelength division multiplexing (UD-WDM) system. In addition, efficient coherent homodyne balanced receivers based on synchronized MSLs are developed and demonstrated for a spectrally phase-encoded optical CDMA (SPE-OCDMA) system.
机译:对各种相干光子系统应用进行了理论和实验研究的1.55微米高速锁模半导体激光器。模架式半导体激光器(MSL)采用单片两部分弯曲半导体光放大器设计成具有高速(> 5 GHz)外腔配置。通过利用单片器件的可饱和吸收器部分,可使用无源或混合锁模技术通过宽带光频率梳产生短光脉冲。通过将磅-Drever-霍尔(PDH)频率稳定技术应用于MSL,可以提高激光器的频率稳定性。关于激光线宽(〜3 MHz),相对强度噪声(RIN)(<-150 dB / Hz),频率稳定后(频率漂移小于350 MHz),改进后的激光性能得到了广泛研究。以及模态RIN(降低约3 dB)。分别通过使用双模注入技术和调制边带注入技术演示了MSL到MSL以及可调谐激光器到MSL同步。对动态锁定行为和锁定带宽进行了实验和理论研究。用几微瓦量级的注入种子功率证明了两个MSL之间的稳定激光同步。演示了基于同步MSL系统的几种相干外差检测,可用于微波光子链路和超密集波分复用(UD-WDM)系统。此外,针对频谱相位编码的光学CDMA(SPE-OCDMA)系统,开发并演示了基于同步MSL的高效相干零差平衡接收机。

著录项

  • 作者

    Lee, Wangkuen.;

  • 作者单位

    University of Central Florida.;

  • 授予单位 University of Central Florida.;
  • 学科 Engineering Electronics and Electrical.;Physics Optics.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 148 p.
  • 总页数 148
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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