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Self-Pulsation Dynamics in Narrow Stripe Semiconductor Lasers

机译:窄条半导体激光器中的自脉动动力学

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摘要

In this paper, we address the physical origin of self-pulsation in narrow stripe edge emitting semiconductor lasers. We present both experimental time-averaged polarization-resolved near-field measurements performed with a charged-coupled device camera and picosecond time resolved near-field measurements performed with a streak camera. These results demonstrate dynamic spatial-hole burning during pulse formation and evolution. We conclude from these experimental results that the dominant process which drives the self-pulsation in this type of laser diode is carrier induced effective refractive index change induced by the spatial-hole burning.
机译:在本文中,我们解决了窄条纹边缘发射半导体激光器中自脉冲的物理起源。我们同时介绍了使用电荷耦合器件相机进行的实验时间平均极化分辨近场测量和使用条纹相机进行皮秒时间分辨近场测量。这些结果证明了在脉冲形成和演化过程中动态的空孔燃烧。我们从这些实验结果得出结论,在这种类型的激光二极管中,驱动自脉冲的主要过程是由空孔燃烧引起的载流子引起的有效折射率变化。

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