Numerical Analysis of Filamentation in Conventional Double Heterostructure and Quantum Well High-Power Broad-Area Laser Diodes

A. Seyedfaraji, V. Ahmadi, M. Noshiravani, F. Gity
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Abstract

A comprehensive model is presented to study filamentation in both conventional double heterostructure (DH) and quantum well (QW) semiconductor lasers. The spatial dynamics of broad-area (BA) semiconductor lasers is studied by numerically solving space-dependent coupled partial differential equations for the complex optical fields and the carrier density distribution. A self-consistent iteration is developed to model the formation and longitudinal propagation of unstable transverse optical filamentary structures by means of beam propagation method. The effects of stripe width, linewidth enhancement factor and Kerr coefficient are analyzed.
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传统双异质结构量子阱大功率广域激光二极管灯丝的数值分析
提出了一个综合模型来研究传统双异质结构(DH)和量子阱(QW)半导体激光器中的丝化。通过数值求解复杂光场和载流子密度分布的空间耦合偏微分方程,研究了广域半导体激光器的空间动力学特性。采用光束传播法,建立了一种自洽迭代法来模拟不稳定横向光学丝状结构的形成和纵向传播。分析了条纹宽度、线宽增强系数和克尔系数的影响。
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