Electric field pattern improvement by air hole radius variation in a 2-D Photonic Crystal laser (non reviewed)

H. Kaatuzian, H.H. Khakmardani, M. Khorasaninejad
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Abstract

In this paper we will focus on photonic crystal lasers which are made by these new structures. Introducing a point defect in the center of a two dimensional slab with triangular lattice of air holes, acts as an optical laser cavity for trapping photons. Several design issues should be noticed in photonic crystal cavities to achieve better lasing action. This is the crucial part of the design which is determined here by desired characteristics for photonic device. Then we have investigated the effect of changing radius of air holes in a triangular lattice of a 2D photonic crystal semiconductor laser on electric field pattern, based on reported observations and experimental measurements. A microdisk structure with central defect has been used in simulations. This structure is formed by a quaternary semiconductor material (InGaAsP) with a refractive index of 3.4.
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二维光子晶体激光器中空穴半径变化对电场模式的改善(未评述)
本文将重点讨论由这些新结构制成的光子晶体激光器。在具有三角形气孔晶格的二维板的中心引入点缺陷,作为捕获光子的光学激光腔。为了获得更好的激光效果,在光子晶体腔中需要注意几个设计问题。这是设计的关键部分,这里由光子器件所需的特性决定。基于已有的观测结果和实验测量结果,研究了二维光子晶体半导体激光器三角形晶格中气孔半径的变化对电场图的影响。采用一种具有中心缺陷的微磁盘结构进行了仿真。该结构由折射率为3.4的四元半导体材料InGaAsP形成。
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