首页> 外文会议>Conference on Linear and Nonlinear Optics of Organic Materials >Photonic crystal and air trench approaches to realize small-area bends and splitters in low index contrast waveguides
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Photonic crystal and air trench approaches to realize small-area bends and splitters in low index contrast waveguides

机译:光子晶体和空气沟槽方法,实现低索引对比波导的小面积弯曲和分离器

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The ability to make small-area bends and splitters in low index contrast waveguide materials is a critical enabler to realize densely integrated planar lightwave circuits (PLCs) in such materials. We discuss two approaches, the first based on photonic crystal (PhC) structures of limited spatial extent and the second on single air trenches. In each case, PhC or air trench regions are used to augment conventional waveguides (CWGs) to permit drastic reductions in overall device size while preserving the traditional advantages of CWGs such as straightforward design for single mode operation, low propagation loss, low fiber coupling loss, low dispersion, and mature microfabrication processes. We show how these approaches can be used to realize example devices having a very small footprint, including Mach-Zender interferometers and ring resonators.
机译:在低折射率对比波导材料中制造小面积弯曲和分离器的能力是在这种材料中实现密集集成的平面光文电路(PLC)的关键推动器。我们讨论了两种方法,首先基于光子晶体(PHC)结构有限的空间范围,第二个在单个空气沟槽上。在每种情况下,PHC或空气沟槽区域用于增强传统的波导(CWG),以允许整体装置尺寸的急剧减少,同时保持CWG的传统优点,例如单模操作的直接设计,低传播损耗,低光纤耦合损耗,低分散和成熟的微制造方法。我们展示了这些方法如何用于实现具有非常小的占地面积的示例器件,包括Mach-Zender干涉仪和环谐振器。

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