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Effect of parameter variations on the static and dynamic behaviour of a self-assembled quantum-dot laser using circuit-level modelling

机译:使用电路级建模参数变化对自组装量子点激光器静态和动态行为的影响

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摘要

We report a new circuit model for a self-assembled quantum-dot (SAQD) laser made of InGaAs/GaAs structures. The model is based on the excited state and standard rate equations, improves the previously suggested circuit models and also provides and investigates the performance of this kind of laser. The carrier dynamic effects on static and dynamic characteristics of a SAQD laser are analysed. The phonon bottleneck problem is simulated. Quantum-dot lasers are shown to be quite sensitive to the crystal quality outside and inside quantum dots. The effects of QD coverage factor, inhomogeneous broadening, the physical source of which is the size fluctuation of quantum dots formed by self-assembly of atoms, and cavity length on the SAQD laser characteristics are analysed. The results of simulation show that an increase in the cavity length and in the QD coverage factor results in the growth of the output power. On the other hand, an increase in the coverage factor and a degradation of inhomogeneous broadening lead to an increase in the modulation bandwidth. The effect of the QD height (cylindrical shape) and stripe width of the laser cavity on QD laser modulation is also analysed.
机译:我们报告了一种由InGaAs / GaAs结构制成的自组装量子点(SAQD)激光器的新电路模型。该模型基于激发态和标准速率方程,改进了先前建议的电路模型,还提供并研究了这种激光器的性能。分析了载流子动力学对SAQD激光器静态和动态特性的影响。模拟了声子瓶颈问题。量子点激光器对量子点内部和外部的晶体质量非常敏感。分析了QD覆盖因子,不均匀展宽的影响,其物理来源是原子自组装形成的量子点的尺寸涨落以及腔长对SAQD激光特性的影响。仿真结果表明,腔体长度和QD覆盖因子的增加会导致输出功率的增加。另一方面,覆盖率的增加和不均匀加宽的降低导致调制带宽的增加。还分析了QD高度(圆柱形状)和激光腔的条纹宽度对QD激光调制的影响。

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