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Modeling Passive Mode-Locking in Quantum Dot Lasers: A Comparison Between a Finite-Difference Traveling-Wave Model and a Delayed Differential Equation Approach

机译:量子点激光器建模被动模式锁定:有限差分行波模型与延迟微分方程方法的比较

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摘要

We present a detailed quantitative comparison between a finite-difference traveling wave (FDTW) model and a delayed differential equation (DDE) approach for the simulation of passive mode-locking in quantum dot lasers with both ring and Fabry-Perot (FP) cavities. Modifications with respect to the standard DDE models available in the literature are proposed. The new DDE approach improves the quantitative agreement with the FDTW model when applied to the simulation of passive mode-locking in FP lasers, preserving a very high computational efficiency. The modifications proposed in the DDE model also apply to the simulation of quantum-well and bulk devices.
机译:我们提出了一个有限差分行波(FDTW)模型和模拟延迟微分方程(DDE)的方法之间的详细定量比较被动模式锁定在量子点激光器与两个环和法布里 - 珀罗(FP)的空腔。相对于在文献中可用的标准DDE模型提出修改。当应用于被动锁模的FP激光器模拟,保持很高的计算效率的新的DDE方法提高与FDTW模型定量协议。在DDE模型提出的修改也适用于量子阱和体器件的仿真。

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