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Investigation of monolithic passively mode-locked quantum dot lasers with extremely low repetition frequency

机译:具有极低重复频率的单片被动锁模量子点激光器的研究

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摘要

The dynamical regimes and performance optimization of quantum dot monolithic passively mode-locked lasers with extremely low repetition rate are investigated using the numerical method. A modified multisection delayed differential equation model is proposed to accomplish simulations of both two-section and three-section passively mode-locked lasers with long cavity. According to the numerical simulations, it is shown that fundamental and harmonic mode-locking regimes can be multistable over a wide current range. These dynamic regimes are studied, and the reasons for their existence are explained. In addition, we demonstrate that fundamental pulses with higher peak power can be achieved when the laser is designed to work in a region with smaller differential gain.
机译:利用数值方法研究了重复率极低的量子点单片被动锁模激光器的动力学机制和性能优化。提出了一种改进的多节延迟微分方程模型,以完成对两节和三节长腔被动锁模激光器的仿真。根据数值模拟,结果表明,基波和谐波锁模态可以在很宽的电流范围内保持多稳态。研究了这些动态机制,并解释了它们存在的原因。此外,我们证明了将激光器设计为在差分增益较小的区域工作时,可以实现具有较高峰值功率的基本脉冲。

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