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Narrowband-Stop Reflector Using Guided-Mode Resonance in Waveguide Cavity for WDM Optical Interconnects

机译:WDM光互连的波导腔中使用导模谐振的窄带截止反射器

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A guided-mode resonance (GMR) filter consists of a sub-wavelength grating in a thin film waveguide on a transparent substrate and shows a narrowband-stop filtering for an incident wave from air. A cavity-resonator-integrated GMR filter (CRIGF) provides GMR filtering with a miniaturized aperture by integrating a waveguide cavity formed by a pair of distributed Bragg reflectors. A combination of a CRIGF with a high reflection substrate can provide a new type of device of band-stop reflector. A concept of a future integrated-optic wavelength-selective modulator using the reflector is proposed. A theoretical model based on coupled-mode theories is discussed to provide analytical expression of a reflection coefficient of the reflector. It was quantitatively shown that reflection spectra depended on optical-buffer-layer thickness. Excess loss in the waveguide cavity should be suppressed to provide narrow bandwidth. It was also found that lower excess loss resulted in smaller fabrication tolerance. The reflector of 10-μm aperture was fabricated and characterized. The extinction ratio in reflectance was measured to be lower than -- 20 dB at a resonance wavelength. The bandwidth at -- 10 dB was narrower than 0.04 nm. Thus a narrowband-stop reflector was theoretically predicted and experimentally demonstrated.
机译:导模谐振(GMR)滤波器由透明基板上薄膜波导中的亚波长光栅组成,并显示了对来自空气的入射波的窄带阻滤波。集成腔谐振器的GMR滤波器(CRIGF)通过集成由一对分布式布拉格反射器形成的波导腔,为GMR滤波提供了一个小型化的孔径。 CRIGF与高反射衬底的组合可以提供一种新型的带阻反射器。提出了使用反射器的未来集成光学波长选择调制器的概念。讨论了基于耦合模理论的理论模型,以提供反射镜反射系数的解析表达式。定量显示反射光谱取决于光学缓冲层的厚度。应抑制波导腔中的过多损耗以提供窄带宽。还发现较低的过量损耗导致较小的制造公差。制作并表征了孔径为10μm的反射镜。在共振波长处测得的反射率的消光比低于-20 dB。 -10 dB时的带宽窄于0.04 nm。因此,从理论上预测和实验证明了窄带阻反射器。

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