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Ultra-Short Pulse Generation in a Three Section Tapered Passively Mode-Locked Quantum-Dot Semiconductor Laser

机译:三段锥形无源锁模量子点半导体激光器中的超短脉冲产生

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We experimentally and theoretically investigate the pulsed emission dynamics of a three section tapered semiconductor quantum dot laser. The laser output is characterized in terms of peak power, pulse width, timing jitter and amplitude stability and a range of outstanding pulse performance is found. A cascade of dynamic operating regimes is identified and comprehensively investigated. We propose a microscopically motivated traveling-wave model, which optimizes the computation time and naturally allows insights into the internal carrier dynamics. The model excellently reproduces the measured results and is further used to study the pulse-generation mechanism as well as the influence of the geometric design on the pulsed emission. We identify a pulse shortening mechanism responsible for the device performance, that is unique to the device geometry and configuration. The results may serve as future guidelines for the design of monolithic high-power passively mode-locked quantum dot semiconductor lasers.
机译:我们在实验和理论上研究了三截面锥形半导体量子点激光器的脉冲发射动力学。激光输出的特征在于峰值功率,脉冲宽度,定时抖动和幅度稳定性,并发现了一系列出色的脉冲性能。识别并全面研究了一系列动态运行机制。我们提出了一种微观驱动的行波模型,该模型优化了计算时间,自然可以洞悉内部载流子动力学。该模型可以很好地重现测量结果,并可以进一步用于研究脉冲生成机理以及几何设计对脉冲发射的影响。我们确定了负责设备性能的脉冲缩短机制,这对于设备的几何形状和配置是唯一的。结果可作为单片高功率无源锁模量子点半导体激光器设计的未来指南。

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