具有可控活性层的光子晶体异质结构

V. Kononenko, Dmitrii Ushakov, A. G. Smirnov
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引用次数: 2

摘要

研究了在近红外光谱中具有光子带隙的一维光子晶体异质结构的性质,设计了用于信息技术的n-i-p-i超晶格光子晶体。首次考虑了n-i-p-i晶体在光子带隙异质结构中的可用性,并描述了不同构型的微腔。确定了GaAs-AlGaAs和GaAs-GaInP系统中光子晶体的光学特性和输出特性,并讨论了光开关、滤波器、单模激光源和放大器的可能应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Photonic crystal heterostructures with controllable active layers
Properties of one-dimensional photonic crystal heterostructures having a photonic band gap in the near infra-red spectrum are examined and photonic crystals with n-i-p-i superlattices are designed for information technologies. For the first time, the availability of n-i-p-i crystals in photonic band gap heterostructures is considered and different configurations of microcavities are described. Optical properties and output characteristics of the photonic crystals in the GaAs-AlGaAs and GaAs-GaInP systems are determined and possible applications for optical switchers, filters, single-mode laser sources, and amplifiers are discussed.
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