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首页> 外文期刊>AEU: Archiv fur Elektronik und Ubertragungstechnik: Electronic and Communication >Improving the performance of all-optical switching based on nonlinear photonic Crystal microring resonators
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Improving the performance of all-optical switching based on nonlinear photonic Crystal microring resonators

机译:改善基于非线性光子晶体微环谐振器的全光切换性能

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摘要

Photonic crystal microring resonators are suitable devices for all-optical integrated circuits. Small size of the structure without radiation loss and topology of structure make these microrings more flexible in design. The light intensity can also be localized inside them, which is appropriate for nonlinear state. This localization and slow group velocity of light in photonic crystals lead to enhancement of nonlinearity within nonlinear photonic crystal microring resonators. So they can be used as active devices in all-optical integrated circuits which are under wide range of researches recently. In this paper, the nonlinear photonic crystal microring resonator is introduced and three different structures for all-optical switching based on them are proposed and their performances are simulated. Also the three structures are compared and the optimal structure is demonstrated. Required power for switching of optimal structure is 0.5655 W.
机译:光子晶体微环谐振器是适用于全光集成电路的器件。结构尺寸小,没有辐射损失​​,并且结构拓扑使这些微环在设计上更加灵活。光强度也可以位于它们内部,这适合于非线性状态。光子晶体中光的这种局域化和缓慢的群速度导致非线性光子晶体微环谐振器内非线性的增强。因此,它们可以用作全光学集成电路中的有源器件,而该器件正在受到广泛的研究。本文介绍了非线性光子晶体微环谐振器,并基于它们提出了三种不同的全光开关结构,并对其性能进行了仿真。还比较了这三种结构,并论证了最佳结构。切换最佳结构所需的功率为0.5655W。

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