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首页> 外文期刊>Journal of Lightwave Technology >Modified Gain and Mode Characteristics in Two-Dimensional Photonic Crystal Waveguide With Microcavity Structure
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Modified Gain and Mode Characteristics in Two-Dimensional Photonic Crystal Waveguide With Microcavity Structure

机译:具有微腔结构的二维光子晶体波导的修正增益和模式特性

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摘要

Optical gain spectra of InGaAsP MQW for photonic crystal waveguide (PCWG) were simulated by the $kcdot p$ method with considering the variation of group velocity and the natural broadening synthetically. The dependence of the first mode''s gain maximum on the width of PCWG was discussed. To improve the mode characteristics and the gain performances in the 2-D PCWG with relative large width, we proposed a new structure by combining a microcavity inside the 2-D PCWG. Mode characteristics in proposed structure were analyzed and the transmission performance was simulated by the FDTD method. The simulation results show that improved longitudinal mode characteristics can be obtained even in the W3 PCWG with relative wide waveguide width because of the additional frequency selecting mechanism provided by the microcavity.
机译:考虑到基团速度的变化和合成的自然展宽,通过$ kcdot p $方法模拟了用于光子晶体波导(PCWG)的InGaAsP MQW的光学增益谱。讨论了第一模式的最大增益对PCWG宽度的依赖性。为了改善具有较大宽度的二维PCWG中的模式特性和增益性能,我们通过组合二维PCWG内部的微腔来提出一种新结构。分析了所提出结构的模式特性,并通过FDTD方法模拟了传输性能。仿真结果表明,由于微腔提供了附加的频率选择机制,即使在波导宽度相对较宽的W3 PCWG中,也可以获得改进的纵向模式特性。

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