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Single-Frequency and Mode-Locked Glass Waveguide Lasers and Fiber-Optic Waveguide Resonators for Optical Communications

机译:用于光通信的单频和锁模玻璃波导激光器和光纤波导谐振器

摘要

Single-frequency and mode-locked silver film ion-exchanged glass waveguide lasers as well as all-optical clock recovery based on birefringent fiber resonators have been experimentally and theoretically studied. The theory, modeling and fabrication process of silver film ion-exchange techniques, have been discussed and presented.The UV-written gratings on both IOG-1 active and passive glass have been studied. For the first time, with a high quality narrowband grating UV-printed on the passive section of a hybrid glass, a DBR waveguide single-frequency laser is demonstrated with the linewidth less than 1 MHz and the output power of 9 mW.Novel saturable absorbers based on a fiber taper embedded in carbon nanotubes (CNTs)/polymer composite were demonstrated. The saturable absorbers were utilized to build mode-locked fiber lasers, which were studied experimentally. A mode-locked ring laser utilizing an Er-Yb-codoped glass waveguide as the gain medium was also demonstrated. In addition, short cavity mode-locked waveguide lasers with CNTs film on the top were theoretically investigated, which shows a short cavity mode-locked waveguide laser is very promising.A new concept to perform multi-channel multi-rate all-optical clock recovery based on birefringent fiber-optic waveguide resonators was discussed. The concept has been advanced to polarization-insensitive operation. The experimental results, obtained as a proof-of-concept, agree well with numerical simulations.
机译:对单频锁模银膜离子交换玻璃波导激光器以及基于双折射光纤谐振器的全光时钟恢复进行了实验和理论研究。讨论和介绍了银膜离子交换技术的理论,建模和制造过程。研究了IOG-1有源和无源玻璃上的紫外写入光栅。首次在混合玻璃的无源部分上紫外印刷了高质量的窄带光栅,展示了DBR波导单频激光器,其线宽小于1 MHz,输出功率为9 mW。基于嵌入在碳纳米管/聚合物复合材料中的纤维锥度的薄膜被证明。利用可饱和吸收体来构建锁模光纤激光器,并进行了实验研究。还展示了一种利用掺Er-Yb的玻璃波导作为增益介质的锁模环形激光器。此外,对顶部具有CNTs薄膜的短腔锁模波导激光器进行了理论研究,表明短腔锁模波导激光器是非常有前途的。一种执行多通道多速率全光时钟恢复的新概念基于双折射光纤波导谐振器的讨论。该概念已发展为对极化不敏感的操作。作为概念证明而获得的实验结果与数值模拟非常吻合。

著录项

  • 作者

    Wang Qing;

  • 作者单位
  • 年度 2008
  • 总页数
  • 原文格式 PDF
  • 正文语种 EN
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