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Tapered cavity surface emitting distributed Bragg reflector lasers

机译:锥形腔面发射分布式布拉格反射器激光器

摘要

High power, diffraction-limited semiconductor lasers are required for a wide range of applications such as pumping for EDFAs, Raman amplifiers, and for free space optical communications. Unstable resonator has been identified as a very promising concept to develop these lasers. The objective of this research is to investigate and develop tapered cavity unstable resonator grating coupled surface emitting lasers (TCSELs). The laser consists of a ridge section, a tapered gain section and a DBR grating section. The ridge is used to ensure single lateral mode operation. The taper is used to achieve high power from a large aperture. The grating is used to provide feedback and surface outcoupling. This laser design has several key features including high output power, near diffraction-limited beam, low divergence angle, single longitudinal mode operation, and integration with dynamic functionality such as wavelength tuning and beam steering. In this dissertation the design, fabrication and characterization of TCSELs are discussed. The theory of TCSELs is presented. As a theoretical investigation, a comprehensive numerical modeling based on finite difference beam propagation method (FD-BPM) for semiconductor laser is developed. The model includes major parameters affecting device performance such as current spreading, carrier diffusion, nonlinear gain-carrier relation, gain saturation, carrier induced antiguiding and thermal lensing. The simulation results are presented and effects of design parameters on device performance are discussed. TCSELs with different device design and functionality are fabricated. The characterization results are discussed. High power operation is obtained under both pulsed and continuous wave (CW) operation. Collimated near diffraction-limited beam is demonstrated with moderate power. Single longitudinal mode operation with high side mode suppression ratio is observed. Wavelength tuning and beam steering is achieved using current injection to the suitable grating section through indium tin oxide (ITO). Several approaches for the improvement of the laser performance are discussed.
机译:高功率,受衍射限制的半导体激光器需要广泛的应用,例如EDFA的泵浦,拉曼放大器和自由空间光通信。不稳定的谐振器已经被认为是开发这些激光器的非常有前途的概念。这项研究的目的是研究和开发锥形腔不稳定谐振腔光栅耦合表面发射激光器(TCSEL)。激光器由一个脊部分,一个锥形增益部分和一个DBR光栅部分组成。脊用于确保单侧向模式操作。锥度用于从大光圈获得高功率。光栅用于提供反馈和表面外耦合。这种激光器设计具有几个关键特性,包括高输出功率,近衍射极限光束,低发散角,单纵模运行以及与动态功能(例如波长调谐和光束转向)的集成。本文讨论了TCSEL的设计,制作和表征。介绍了TCSEL的理论。作为理论研究,建立了基于有限差分光束传播方法(FD-BPM)的半导体激光器的综合数值模型。该模型包括影响器件性能的主要参数,例如电流扩展,载流子扩散,非线性增益-载流子关系,增益饱和,载流子诱导的抗导和热透镜。给出了仿真结果,并讨论了设计参数对器件性能的影响。制作了具有不同器件设计和功能的TCSEL。讨论了表征结果。在脉冲和连续波(CW)操作下均可获得高功率操作。准直近衍射极限光束被证明具有中等功率。观察到具有高侧模抑制比的单纵模操作。使用电流通过铟锡氧化物(ITO)注入合适的光栅部分,即可实现波长调谐和光束控制。讨论了几种改善激光器性能的方法。

著录项

  • 作者

    Luo Hui;

  • 作者单位
  • 年度 2000
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
  • 中图分类

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