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A new variational method of incorporating loss in the analysis of coupled multiple-quantum well three-dimensional waveguides

机译:耦合多量子阱三维波导分析中引入损耗的新变分方法

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We have developed a simple method of calculating the imaginary part of the propagation constant in a lossy waveguide that closely follows the effective-index method of finding the real propagation constant of a rectangular dielectric guide. The method gives values much in agreement with the exact values obtained by the circular-harmonics method. The method has been used in the improved coupled-mode analysis of coupled-multiple-quantum-well waveguides developed by Tsang and Chuang. Three different configurations of coupled waveguides have been considered: slab, buried-channel, and strip-loaded waveguide directional couplers, where excitonic electrorefraction in multiquantum wells has been utilized to accomplish the switching. The output power-electric field curves calculated by using the above method agree closely in all three cases with similar curves obtained by using a complex propagation constant calculated by a numerical two-dimensional root-searching technique. The present method simplifies the design and optimization of coupled-waveguide devices and its application is illustrated in the case of multiple-quantum-well directional couplers.
机译:我们已经开发出一种简单的方法来计算有损波导中的传播常数的虚部,该方法紧跟有效折射率方法,即找到矩形介质波导的实际传播常数。该方法给出的值与通过圆谐波方法获得的精确值非常一致。该方法已用于Tsang和Chuang开发的耦合多量子阱波导的改进耦合模式分析中。已经考虑了耦合波导的三种不同配置:平板,埋入通道和条状加载波导定向耦合器,其中利用多量子阱中的激子电折射来完成转换。通过上述方法计算出的输出功率-电场曲线在所有三种情况下与通过使用数值二维根搜索技术计算出的复数传播常数获得的相似曲线非常吻合。本方法简化了耦合波导装置的设计和优化,并在多量子阱定向耦合器的情况下说明了其应用。

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