硅光子晶体集成光学器件的设计

Zhiyong Li, Lin Gan, Chen Wang
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引用次数: 0

摘要

在过去的25年中,光子晶体由于其在微米/纳米尺度上塑造光流的强大能力以及在构建全光集成器件和电路方面的前景而引起了广泛的关注。在这次演讲中,我们介绍了我们最近在红外硅二维光子晶体板中集成光学元件和器件的设计,制造和表征方面的努力。这些器件要么在带隙限制上工作,要么在带色散控制上工作。我们关注的主题包括宽带广角自准直效应、片上光学二极管和隔离器、无明显约束势垒的新腔和聚合物-硅混合非线性光子晶体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of silicon photonic crystal integrated optical devices
Photonic crystal has attracted extensive interest in the past 25 years due to its great power to mold the flow of light in micrometer/nanometer scale and promising aspects in building all-optical integrated devices and circuits. In this talk we present our recent efforts of design, fabrication, and characterization of integrated optical elements and devices in infrared silicon two-dimensional photonic crystal slabs. These devices operate either on band gap confinement or on band dispersion control. We focus on topics such as the broad-band wide-angle self-collimation effect, on-chip optical diodes and isolators, new cavities without apparent confinement barriers, and polymer-silicon hybrid nonlinear photonic crystal.
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