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Modelling colliding-pulse mode-locked semiconductor lasers

机译:建模碰撞脉冲锁模半导体激光器

摘要

It is the goal of applied mathematics to study mathematical models of physical systems to elucidate their operation principles. The development of simple theoretical models requires a strong interaction between experimentalists and theoreticians. especially in the case of phenomenological models, where parameter values in a propsed model are fitted, so that the model output is in good agreement with experiments. In general many parameter values entering a derived or proposed model are determined by experiments while the theoretical models are typically used to improve the device design or to determine the optimum operation conditions. The purpose of this thesis is to elucidate some of the physics of interest in the field of semiconductor laser modelling, semiconductor optics and fiber optics. To be more specific we will investigate: The Colliding-Pulse Mode-Locked (CPM) Quantum Well (QW) laser diode; the excitonic semiconductor response for varying material thickness in the case of linear optics; and modulational instability of electromagnetic waves in media with spatially varying non-linearity.
机译:应用数学的目标是研究物理系统的数学模型,以阐明其工作原理。简单理论模型的发展需要实验者和理论家之间的强大互动。尤其是在现象学模型的情况下,拟合模型中的参数值被拟合,因此模型输出与实验非常吻合。通常,通过实验确定进入派生模型或提议模型的许多参数值,而理论模型通常用于改善设备设计或确定最佳操作条件。本文的目的是阐明半导体激光建模,半导体光学和光纤领域中的一些感兴趣的物理学。更具体地说,我们将研究:碰撞脉冲锁模(CPM)量子阱(QW)激光二极管;在线性光学的情况下,材料厚度变化时的激子半导体响应;空间非线性变化的介质中电磁波的调制和不稳定性。

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