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Stability of steady-state high-power semiconductor laser models

机译:稳态大功率半导体激光器模型的稳定性

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Fox-Li iteration-based algorithms form the core of steady-state design tools for high-power semiconductor lasers. The theoretical formalism is developed for Fox-Li iteration-based algorithms as applied to high-power lasers. This allows us to study their numerical properties, explain their behavior, and show the nature of the calculated approximate cavity modes. Lower-dimensional models are used to identify and explain the source of numerical instabilities and to find ways of improving the convergence rate of Fox-Li iteration algorithms. Finally, the results of the lower-dimensional analysis are verified by performing simulations of high-power tapered laser diodes in two dimensions using the finite-difference beam-propagation method. (C) 2007 Optical Society of America.
机译:基于Fox-Li迭代的算法构成了用于大功率半导体激光器的稳态设计工具的核心。理论形式主义是针对应用于高功率激光器的基于Fox-Li迭代的算法而开发的。这使我们能够研究它们的数值特性,解释其行为,并显示计算出的近似腔模的性质。低维模型用于识别和解释数值不稳定性的根源,并找到提高Fox-Li迭代算法收敛速度的方法。最后,通过使用有限差分光束传播方法对二维高功率锥形激光二极管进行仿真,验证了低维分析的结果。 (C)2007年美国眼镜学会。

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