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Analysis of the Linewidth-Enhancement Factor of Long-Wavelength Tunnel-Injection Quantum-Dot Lasers

机译:长波长隧道注入量子点激光器的线宽增强因子分析

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We have studied the linewidth-enhancement factor of 1.3-mum tunnel-injection quantum-dot (QD) lasers utilizing a rate-equation model that takes into account the injection of electrons directly into the QDs from a coupled quantum well, the presence of wetting layer states, and nonequilibrium carrier relaxation in the QDs. In a conventional separate confinement heterostructure QD laser, plasma effects, which result from a large portion of the injected carriers preferably occupying the barrier and wetting layer states, largely determine the values of the linewidth-enhancement factor and lead to a strong dependence of the linewidth-enhancement factor on injection current. In a tunnel-injection QD laser, however, due to the injection of "cold" electrons directly into the lasing states of the QDs, both the values of linewidth-enhancement factor and the dependence on injection current are substantially reduced. The calculated linewidth-enhancement factors of conventional separate confinement heterostructure and tunnel-injection QD lasers are in excellent agreement with reported experimental values. Our analysis elucidates the role of tunnel injection in achieving near-zero alpha-parameter, which would be important in the design of chirp-free high-speed QD lasers
机译:我们使用速率方程模型研究了1.3微米隧道注入量子点(QD)激光器的线宽增强因子,该模型考虑了将电子从耦合量子阱中直接注入QD的情况,量子点中的层态和非平衡载流子弛豫。在传统的单独限制异质结构QD激光器中,由大部分注入的载流子(优选占据势垒和润湿层状态)引起的等离子体效应在很大程度上决定了线宽增强因子的值,并导致线宽的强烈依赖性-注入电流的增强因子。然而,在隧道注入QD激光器中,由于将“冷”电子直接注入QD的激射状态,线宽增强因子的值和对注入电流的依赖性都大大降低了。传统的单独限制异质结构和隧道注入QD激光器的线宽增强因子的计算与报道的实验值非常吻合。我们的分析阐明了隧道注入在实现接近零的α参数方面的作用,这对于无chi高速QD激光器的设计非常重要

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