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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Modeling of carrier dynamics in quantum-well electroabsorption modulators
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Modeling of carrier dynamics in quantum-well electroabsorption modulators

机译:量子孔电吸收调节器中载波动力学的建模

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We present a comprehensive drift-diffusion-type electroabsorption modulator (EAM) model. The model allows us to investigate both steady-state properties and to follow the sweep-out of carriers after pulsed optical excitation. Furthermore, it allows for the investigation of the influence that various design parameters have on the device properties, in particular how they affect the carrier dynamics and the corresponding field dynamics. A number of different types of results are presented. We calculate absorption spectra and steady-state field screening due to carrier pile-up at the separate-confinement heterobarriers. We then move on to look at carrier sweep-out upon short-pulse optical excitation. For a structure with one well, we analyze how the well position affects the carrier sweep-out and the absorption recovery. We calculate the field dynamics in a multiquantum-well structure and discuss how the changes in the field near each well affect the escape of carriers from that well. Finally, we look at the influence that the separate-confinement heterostructure barriers have on the carrier sweep-out.
机译:我们提供了一个综合漂移 - 扩散型电吸收调制器(EAM)模型。该模型允许我们研究稳态性质,并在脉冲光学激发后沿载流子扫除。此外,它允许研究各种设计参数对设备性质的影响,特别是它们如何影响载波动态和相应的场动态。提出了许多不同类型的结果。我们在单独限制异常的载体堆积时计算吸收光谱和稳态场筛选。然后,我们继续在短脉冲光学激励时查看载体扫除。对于具有井的结构,我们分析了井位置如何影响载体扫除和吸收恢复。我们在融合井结构中计算现场动态,并讨论每个井附近的字段的变化如何影响载体的逃逸。最后,我们看看单独限制异质结构屏障对载体扫除的影响。

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