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Analytical and numerical studies of waveguiding and coupling periodic dielectric materials.

机译:波导和耦合周期性介电材料的分析和数值研究。

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摘要

Using both analytical approaches and finite difference time domain simulations, we investigate different types of waveguiding and coupling mechanisms, including direct coupling between the optical resonators, waveguide-resonator coupling, indirect resonator coupling via waveguide modes, and Bragg reflection in cylindrically symmetric geometries.; By coupling an array of high Q optical resonators together, we form a new type of waveguide, coupled resonator optical waveguide (CRMV), where photons propagate by “hopping” from one resonator to its nearest neighbors. Using tight-binding by approximation, we find that the CROW modes retain the symmetries of the isolated high Q optical modes and the CROW band dispersion can be simply characterized by a coupling coefficient κ. The tight-binding results are confirmed by using the finite difference time domain algorithms to analyze two examples of CROW's: one is composed of coupled defect cavities in a two-dimensional triangular lattice photonic crystal, while the other is formed by coupling an array of dielectric microdisk cavities.; By coupling a resonator to a waveguide, we significantly change the reflection and transmission characteristics of the waveguide. The waveguide dispersion call also be drastically modified by coupling an array of resonators to the waveguide, due to indirect coupling between the resonators via waveguide modes. Using a formalism based on the quantum scattering theory, we investigate how the waveguide-resonator coupling, resonator gain (loss), degeneracy and symmetries of the resonator modes influence the optical properties of such coupled waveguide-resonator systems.; Bragg guiding can be achieved in cylindrically symmetric geometries by using cladding media with alternating high and low refractive indices. Examples include Bragg fibers and dielectric coaxial fibers. An asymptotic formalism is developed to study the dispersion propagation loss and field distribution of guided modes in such fibers. The results are compared with those obtained from numerical calculations, where excellent agreement is found between the two approaches.
机译:使用解析方法和时域有限差分仿真,我们研究了不同类型的波导和耦合机制,包括光谐振器之间的直接耦合,波导-谐振器耦合,通过波导模式的间接谐振器耦合以及圆柱对称几何中的布拉格反射。通过将高Q光谐振器阵列耦合在一起,我们形成了一种新型的波导,即耦合谐振器光波导(CRMV),其中光子通过“跳跃”从一个谐振器传播到其最近的邻居。通过近似使用紧束缚,我们发现CROW模式保留了孤立的高Q光学模式的对称性,并且CROW波段色散可以简单地由耦合系数κ表征。通过使用有限差分时域算法分析CROW的两个示例,可以确认紧密结合的结果:一个是由二维三角晶格光子晶体中的耦合缺陷腔组成,而另一个是通过耦合电介质阵列形成的微盘腔。通过将谐振器耦合到波导,我们可以显着改变波导的反射和传输特性。由于谐振器之间通过波导模式的间接耦合,还可以通过将谐振器阵列耦合到波导来彻底修改波导色散调用。使用基于量子散射理论的形式主义,我们研究了波导-谐振器耦合,谐振器增益(损耗),谐振器模式的简并性和对称性如何影响这种耦合的波导-谐振器系统的光学特性。通过使用具有交替的高和低折射率的包层介质,可以在圆柱对称的几何形状中实现布拉格引导。示例包括布拉格纤维和介电同轴纤维。渐近形式主义被开发来研究这种光纤中色散的传播损耗和导模的场分布。将结果与从数值计算获得的结果进行比较,在数值计算中,两种方法之间发现了极好的一致性。

著录项

  • 作者

    Xu, Yong.;

  • 作者单位

    California Institute of Technology.;

  • 授予单位 California Institute of Technology.;
  • 学科 Physics Optics.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 158 p.
  • 总页数 158
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

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