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Ultrafast Gain Dynamics in Quantum Dot Amplifiers: Theoretical Analysis and Experimental Investigations

机译:量子点放大器中的超快增益动力学:理论分析和实验研究

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摘要

Ultrafast gain dynamics in an optical amplifier with an active layer of self-organized quantum dots (QDs) emitting near 1.3$muhbox m$is characterized experimentally in a pump-probe experiment and modeled theoretically on the basis of QD Maxwell–Bloch equations. Experiment and theory are in good agreement and show ultrafast subpicoseconds gain recovery followed by a slower 5 ps recovery. This behavior is found to be mainly caused by longitudinal optical phonon scattering and strongly dependents on electronic structure and confinement energy of the dots. A low amplitude-phase coupling ($alpha$factor) is theoretically predicted and demonstrated in the experiments. The fundamental analysis reveals the underlying physical processes and indicates limitations to QD-based devices.
机译:具有泵浦探针实验并通过QD Maxwell-Bloch方程在理论上建模的具有自发量子点(QD)有源层的近1.3mmuhbox m $发射层的光放大器中的超快增益动力学。实验和理论非常吻合,显示出超快的皮秒级增益恢复,随后的5 ps恢复较慢。发现这种行为主要是由声子的纵向光学散射引起的,并且强烈依赖于电子结构和点的限制能量。理论上可以预测并证明低振幅相位耦合(α因子)。基本分析揭示了潜在的物理过程,并指出了基于QD的设备的局限性。

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