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光子晶体器件的3D集成:与硅波导的垂直耦合

3D integration of photonic crystal devices: vertical coupling with a silicon waveguide.

作者信息

Ferrier L, Romeo P Rojo, Letartre X, Drouard E, Viktorovitch P

机构信息

Laboratoire de Photonique et de Nanostructures, CNRS-UPR 20, route de Nozay, Marcoussis, France.

出版信息

Opt Express. 2010 Jul 19;18(15):16162-74. doi: 10.1364/OE.18.016162.

Abstract

Two integrated devices based on the vertical coupling between a photonic crystal microcavity and a silicon (Si) ridge waveguide are presented in this paper. When the resonator is coupled to a single waveguide, light can be spectrally extracted from the waveguide to free space through the far field emission of the resonator. When the resonator is vertically coupled to two waveguides, a vertical add-drop filter can be realized. The dropping efficiency of these devices relies on a careful design of the resonator. In this paper, we use a Fabry-Perot (FP) microcavity composed of two photonic crystal (PhC) slab mirrors. Thanks to the unique dispersion properties of slow Bloch modes (SBM) at the flat extreme of the dispersion curve, it is possible to design a FP cavity exhibiting two quasi-degenerate modes. This specific configuration allows for a coupling efficiency that can theoretically achieve 100%. Using 3D FDTD calculations, we discuss the design of such devices and show that high dropping efficiency can be achieved between the Si waveguides and the PhC microcavity.

摘要

本文介绍了两种基于光子晶体微腔与硅(Si)脊形波导之间垂直耦合的集成器件。当谐振器耦合到单个波导时,光可以通过谐振器的远场发射从波导光谱提取到自由空间。当谐振器垂直耦合到两个波导时,可以实现垂直分插滤波器。这些器件的分插效率依赖于谐振器的精心设计。在本文中,我们使用由两个光子晶体(PhC)平板镜组成的法布里 - 珀罗(FP)微腔。由于色散曲线平坦极值处慢布洛赫模式(SBM)的独特色散特性,可以设计出具有两个准简并模式的FP腔。这种特定配置允许耦合效率理论上达到100%。使用三维有限时域差分(3D FDTD)计算,我们讨论了此类器件的设计,并表明在Si波导和PhC微腔之间可以实现高分插效率。

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