载流子捕获-逃逸过程对量子点激光器动力学行为和特性的影响

V. Lysak, A. Shulika, I. Sukhoivanov
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引用次数: 0

摘要

在非常小的尺寸(线性尺寸小于或等于激子玻尔半径)下,三个方向上的空间载流子约束减少到量子点(QD)内载流子的离散功率谱。这使得量子点激光器的结构性能有了显著的改善。此外,如果能态之间的距离大大超过热能值,则可以避免在功率窗口中产生约kT的“嘶哑”载流子。对量子点激光器的理论和实验研究已经进行了许多论文,其中最关注的是量子点中的放大现象和阈值电流的定义。载流子捕获和逃逸过程在量子阱激光器动力学中起着至关重要的作用。在量子点激光器中,这些过程也有很大的影响。特别是逃逸过程会引起空间孔燃烧效应。本文提出了量子点激光器的三能级传输在线模型。利用该模型,我们数值研究了载流子捕获-逃逸过程对量子点激光器光响应、调制和电流瓦特特性的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of carrier capture-escape processes on dynamical behaviour and characteristics of quantum dot laser
The space carrier confinements in all three directions at very small size (linear size is below or equal to the exciton Bohr radius) reduce to the discrete power spectrum of carriers inside the quantum dot (QD). This results in a significant improvement in the QD laser structure properties. Also if the distance between the energy states considerably exceeds the value of the thermal energy, "fizzing" carriers in the power window about kT can be avoided. Theoretical and experimental research into QD lasers has been conducted over many papers and most attention has been given to the amplification phenomenon in QDs and a definition of the threshold currents. The processes of carrier capture and escape play an essential role in the dynamics of quantum well lasers. In QD lasers these processes have a large influence too. In particular, the escape processes can cause the spatial hole burning effect. In this work we present a three-level transmission-line model of the QD laser. Using this model we study numerically the influence of carrier capture-escape processes on optical response, modulations and current watt (CW) characteristics from QD lasers.
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