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Photonic crystal waveguide modulators for silicon photonics: Device physics and some recent progress

机译:硅光子学的光子晶体波导调制器:器件物理学和一些最新进展

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We review the basic principles, structural designs, and electrical characteristics of photonic crystal waveguide modulators based on slow light Mach-Zehnder interferometers. A number of structural and electrical configurations of photonic crystal waveguide modulators are discussed. In addition to the advantages associated with the slow group velocity, photonic crystal waveguide modulators are found to exhibit other structural and optoelectronic merits for high speed modulation. We also briefly review past work on silicon modulators and present certain speed scaling of silicon modulators. The scaling is governed by certain intrinsic optoelectronic properties of silicon and fundamental nature of light, and plays a significant role in determining the minimum ac current density and power of silicon modulators as demonstrated in some recent experiments.
机译:我们回顾了基于慢速马赫曾德尔干涉仪的光子晶体波导调制器的基本原理,结构设计和电气特性。讨论了光子晶体波导调制器的许多结构和电配置。除了与慢群速度有关的优点外,发现光子晶体波导调制器还具有用于高速调制的其他结构和光电优点。我们还将简要回顾一下过去在硅调制器上的工作,并介绍了硅调制器的某些速度定标。缩放比例受硅的某些固有光电特性和光的基本特性支配,并且在确定最小交流电流密度和硅调制器的功率方面起着重要作用,如最近的一些实验所示。

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