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Reconfigurable Bi-directional Optical Routing in Photonic Crystals Enabled by Silicon Nanomembrane Modules

机译:硅纳米膜模块支持的光子晶体中的可重构双向光路由

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using different wavelengths, each of which carries a separate, independent signal. We present and discuss a reconfigurable WDM based on slow-light, functioning as a bi-directional optical routing and processing network, consisting of photonic crystals designed as drop/add filters. The photonic crystal based routing elements consist of two waveguides coupled through a resonant cavity. Photonic crystals offer the ability to achieve separation of many channels on a much smaller scale than their predecessors. Photonic crystals have led a challenging frontier of miniaturization and large scale integration of high-density optical interconnects, and with the aid of nanomembranes, optical routing networks can set a new standard for high-density optical interconnects.
机译:使用不同的波长,每个波长承载一个单独的独立信号。我们介绍并讨论一种基于慢光的可重配置WDM,它可作为双向光路由和处理网络,由设计为分插滤光器的光子晶体组成。基于光子晶体的路由元件由两个通过谐振腔耦合的波导组成。光子晶体能够以比其前身小得多的规模实现许多通道的分离。光子晶体引领了高密度光学互连的小型化和大规模集成的挑战性前沿,并且借助纳米膜,光路由网络可以为高密度光学互连树立新的标准。

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