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浅光子晶体波导的模式:半解析处理

Modes of shallow photonic crystal waveguides: semi-analytic treatment.

作者信息

Mahmoodian S, Poulton C G, Dossou K B, McPhedran R C, Botten L C, de Sterke C M

机构信息

IPOS and CUDOS, School of Physics, University of Sydney, 2006, Australia.

出版信息

Opt Express. 2009 Oct 26;17(22):19629-43. doi: 10.1364/OE.17.019629.

Abstract

We investigate the formation of photonic crystal waveguide (PCW) modes within the framework of perturbation theory. We derive a differential equation governing the envelope of PCW modes constructed from weak perturbations using an effective mass formulation based on the Luttinger-Kohn method from solid-state physics. The solution of this equation gives the frequency of the mode and its field. The differential equation lends itself to simple analytic approximations which reduce the problem to that of solving slab waveguide modes. By using this model, we demonstrate that the nature of the projected band structure and corresponding Bloch functions are central to the behaviour of PCW modes. With this understanding, we explain why the odd mode in a hexagonal PCW spans the entire Brillouin zone while the even mode is cut off.

摘要

我们在微扰理论框架内研究光子晶体波导(PCW)模式的形成。我们基于固态物理中的卢廷格 - 科恩方法,使用有效质量公式,推导了一个由弱微扰构建的PCW模式包络的微分方程。该方程的解给出了模式的频率及其场。这个微分方程便于进行简单的解析近似,从而将问题简化为求解平板波导模式的问题。通过使用这个模型,我们证明了投影能带结构和相应的布洛赫函数的性质对于PCW模式的行为至关重要。基于这种理解,我们解释了为什么六边形PCW中的奇模跨越整个布里渊区而偶模被截止。

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