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Photonic crystal slab waveguides in moderate index contrast media: Generalized transverse Bragg waveguides.

机译:中折射率对比剂中的光子晶体平板波导:广义横向布拉格波导。

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摘要

One of the anticipated advantages of photonic crystal waveguides is the ability to tune waveguide dispersion and propagation characteristics to achieve desired properties. The majority of research into photonic crystal waveguides centers around high index contrast photonic crystal waveguides with complete in-plane bandgaps in the photonic crystal cladding. This work focuses on linear photonic crystal waveguides in moderate index materials, with insufficient index contrast to guarantee a complete in-plane bandgap. Using a technique called Interferometric Lithography (IL) as well as standard semiconductor processing steps, a process flow for creating large area (∼cm 2), linear photonic crystal waveguides in a spin-deposited photocurable polymer is outlined. The study of such low index contrast photonic crystal waveguides offers a unique opportunity to explore the mechanisms governing waveguide confinement and photonic crystal behavior in general.; Results from two optical characterization experiments are provided. In the first set of experiments, rhodamine 590 organic laser dye was incorporated into the polymer prior to fabrication of the photonic crystal slab. Emission spectra from waveguide core modes exhibit no obvious spectral selectivity owing to variation in the periodicity or geometry of the photonic crystal. In addition, grating coupled waveguides were fabricated, and a single frequency diode laser was coupled into the waveguide in order to study the transverse mode structure. To this author's knowledge, the optical mode profile images are the first taken of photonic crystal slab waveguides, exhibiting both simple low order mode structure as well as complex high order mode structure inconsistent with effective index theory. However, no obvious correlation between the mode structure and photonic crystal period or geometry was evident. Furthermore, in both the laser dye-doped and grating coupled waveguides, low loss waveguiding was observed regardless of wavelength to period ratio.; These optical results indicated a need for a deeper understanding of the confinement/guiding mechanisms in such waveguide structures. A simplification of the full 2-D problem to a more tractable "tilted 1-D" geometry led to the proposal of a new waveguide geometry, Generalized Transverse Bragg Waveguides (GTBW), as well as a new propagation mode characterized by spatial variation in both the transverse direction as well as the direction of propagation. GTBW demonstrate many of the same dispersion tunability traits exhibited in complete bandgap photonic crystal waveguides, under more modest fabrication demands, and moreover provide much insight into photonic crystal waveguide modes of all types.; Generalized Transverse Bragg Waveguides are presented in terms of the standard physical properties associated with waveguides, including the dispersion relation, expressions for the spatial field profile, and the concepts of phase and group velocity. In addition, the proposal of at least one obvious application, semiconductor optical amplifiers, is offered.
机译:光子晶体波导的预期优点之一是能够调节波导的色散和传播特性以实现所需的性能。对光子晶体波导的大多数研究都围绕高折射率对比度光子晶体波导,在光子晶体覆层中具有完整的面内带隙。这项工作集中于中等折射率材料的线性光子晶体波导,折射率对比度不足以保证完整的面内带隙。概述了使用称为干涉光刻法(IL)的技术以及标准的半导体工艺步骤,概述了在自旋沉积的光固化聚合物中形成大面积(〜cm 2)线性光子晶体波导的工艺流程。这种低折射率对比光子晶体波导的研究提供了一个独特的机会来探索控制波导限制和总体上光子晶体行为的机制。提供了两个光学表征实验的结果。在第一组实验中,在制造光子晶体平板之前,将若丹明590有机激光染料掺入聚合物中。由于光子晶体的周期性或几何形状的变化,波导芯模的发射光谱没有明显的光谱选择性。另外,制造光栅耦合波导,并将单频二极管激光器耦合到波导中以研究横向模式结构。据作者所知,光学模式轮廓图是光子晶体平板波导的第一个图像,显示出简单的低阶模式结构以及复杂的高阶模式结构,与有效折射率理论不一致。但是,模态结构与光子晶体周期或几何形状之间没有明显的相关性。此外,在激光染料掺杂的波导和光栅耦合的波导中,都观察到低损耗的波导,而与波长周期比无关。这些光学结果表明需要更深入地了解这种波导结构中的限制/引导机制。将完整的2D问题简化为更易于处理的“倾斜1D”几何导致了新波导几何的提出,即广义横向布拉格波导(GTBW),以及以空间变化为特征的新传播模式。横向和传播方向都一样。 GTBW在更适度的制造要求下,展示了在完整的带隙光子晶体波导中表现出的许多相同的色散可调性特征,而且还为各种类型的光子晶体波导模式提供了很多见识。根据与波导相关的标准物理属性来介绍广义横向布拉格波导,包括色散关系,空间场轮廓的表达式以及相位和群速度的概念。另外,提出了至少一种明显的应用的建议,即半导体光放大器。

著录项

  • 作者

    Burckel, David Bruce.;

  • 作者单位

    The University of New Mexico.;

  • 授予单位 The University of New Mexico.;
  • 学科 Engineering Electronics and Electrical.; Physics Optics.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 111 p.
  • 总页数 111
  • 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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