Pochet M, Naderi N A, Terry N, Kovanis V, Lester L F
Center for High Technology Materials, University of New Mexico, 1313 Goddard SE, Albuquerque, NM 87106, USA.
Opt Express. 2009 Nov 9;17(23):20623-30. doi: 10.1364/OE.17.020623.
This work investigates the behavior of a zero-detuned optically-injected quantum-dash Fabry-Perot laser as the injected field ratio is increased from near-zero to levels resulting in stable locking. Using a normalized model describing optically-injected semiconductor lasers, variations in the slave laser's free-running characteristics are shown to have a strong impact on the coupled system's behavior. The theoretical model is verified experimentally using a high resolution spectrometer. It is found that the quantum-dash laser has the technological advantage of a low linewidth enhancement factor at low bias currents that suppresses undesirable Period-2 and chaotic behavior. Such observations suggest that optically-injected quantum-dash lasers can be used as an enabling component for tunable photonic oscillators.
本文研究了零失调光注入量子点法布里-珀罗激光器在注入场比率从接近零增加到导致稳定锁定的水平时的行为。使用描述光注入半导体激光器的归一化模型,表明从激光器自由运行特性的变化对耦合系统的行为有很大影响。通过高分辨率光谱仪对理论模型进行了实验验证。发现量子点激光器在低偏置电流下具有低线宽增强因子的技术优势,可抑制不期望的2周期和混沌行为。这些观察结果表明,光注入量子点激光器可用作可调谐光子振荡器的关键组件。