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Hybrid semiconductor fiber lasers for telecommunications.

机译:电信用混合半导体光纤激光器。

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摘要

Highly stable edge emitting semiconductor lasers are of utmost importance in most telecommunications applications where high-speed data transmission sets strict limits on the purity of the laser signal. Unfortunately, most edge emitting semiconductor lasers, unlike gaseous or solid-state laser sources, operate with many closely spaced axial modes, which accounts for the observed instability and large spikes in the output spectrum of such lasers. Consequently, in most telecom applications distributed feedback (DFB) or distributed Bragg reflector (DBR) techniques are used to ensure stability and single-frequency operation, further adding to the cost and complexity of such lasers. Additionally, coupling of the highly elliptical output beam of these lasers to singlemode fibers complicates the packaging procedure and sub-micron alignment of various optical components is often necessary.; Utilizing the evanescent coupling between a semiconductor antiresonant reflecting optical waveguide (ARROW) and a side polished fiber, this thesis presents an alternative side-coupled laser module that eliminates the need for the cumbersome multi-component alignment processes of conventional laser packages, and creates an inherent mode selection mechanism that guarantees singlemode radiation into the fiber without any gratings. We have been able to demonstrate the first side-coupled fiber semiconductor laser in this technology, coupling more than 3mW of power at 850nm directly into a 5/125mum singlemode fiber. This mixed-cavity architecture yields a high thermal stability (∼0.06nm/°C), and negligible spectral spikes are observed. Theoretical background and simulation results, as well as several supplementary materials are also presented to further rationalize the experimental data. A side-coupled light-emitter and pre-amplifier are also proposed and discussed. We also study different architectures for attaining higher efficiency, higher output power, and wavelength tunability in such lasers. Finally, we discuss possible venues for integration of these side-coupled devices in a telecommunication system. Approved for publication.
机译:在大多数电信应用中,高度稳定的边缘发射半导体激光器在高速数据传输对激光信号的纯度设置严格限制的大多数电信应用中至关重要。不幸的是,与气体或固态激光源不同,大多数边缘发射半导体激光器都以许多紧密间隔的轴向模式工作,这解释了这种激光器的不稳定性和输出光谱中的大尖峰。因此,在大多数电信应用中,使用分布式反馈(DFB)或分布式布拉格反射器(DBR)技术来确保稳定性和单频操作,这进一步增加了此类激光器的成本和复杂性。另外,将这些激光器的高椭圆输出光束耦合到单模光纤会使封装过程变得复杂,并且经常需要各种光学组件的亚微米对准。利用半导体反共振反射光波导(ARROW)和侧面抛光光纤之间的the逝耦合,本论文提出了一种替代性的侧面耦合激光器模块,它消除了传统激光器封装中繁琐的多组件对准过程的需要,固有的模式选择机制,可确保单模辐射进入光纤而无需任何光栅。我们已经能够演示该技术中的第一台侧耦合光纤半导体激光器,它将850nm处超过3mW的功率直接耦合到5 / 125mum单模光纤中。这种混合腔结构具有很高的热稳定性(〜0.06nm /°C),并且观察到的光谱峰值可忽略不计。还提供了理论背景和仿真结果,以及一些补充材料,以进一步合理化实验数据。还提出并讨论了侧耦合的发光器和前置放大器。我们还研究了不同的体系结构,以在此类激光器中获得更高的效率,更高的输出功率和波长可调性。最后,我们讨论了将这些侧耦合设备集成到电信系统中的可能场所。批准发布。

著录项

  • 作者

    Khalili, Alireza.;

  • 作者单位

    Stanford University.;

  • 授予单位 Stanford University.;
  • 学科 Engineering Electronics and Electrical.; Physics Optics.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 108 p.
  • 总页数 108
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;光学;
  • 关键词

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