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Modeling the DBR laser used as wavelength conversion device

机译:DBR激光器的建模用作波长转换装置

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摘要

In this paper, a novel and efficient way to model the dynamic field in optical DBR-type semiconductor devices is presented. The model accounts for the longitudinal carrier, photon, and refractive index distribution. Furthermore, the model handles both active and passive sections that may include gratings. Thus, simulations of components containing, e.g., gain sections, absorptive sections, phase sections, and gratings, placed arbitrarily along the longitudinal direction of the cavity, are possible. Here, the model has been used for studying the DBR laser as a wavelength converter. Particularly, to improve the performance of the DBT converter, the influence of system and device parameters will be discussed. Calculations show that ultrafast wavelength conversion with rise and fall times less than 50 ps can be obtained. Also, a regenerative effect simultaneous with the wavelength conversion is expected, e.g., improvements in the extinction ratio of the signal of more than 6 dB is predicted for correct design and operation of the component
机译:在本文中,提出了一种新颖且有效的方法来对光学DBR型半导体器件中的动态场进行建模。该模型考虑了纵向载流子,光子和折射率分布。此外,模型处理可能包括光栅的主动和被动部分。因此,可以模拟沿着空腔的纵向任意放置的包含例如增益部分,吸收部分,相位部分和光栅的组件。在此,该模型已用于研究作为波长转换器的DBR激光器。特别是,为了提高DBT转换器的性能,将讨论系统和设备参数的影响。计算表明,可以获得上升和下降时间小于50 ps的超快速波长转换。另外,还期望在波长转换的同时具有再生效果,例如,为了组件的正确设计和操作,预计信号消光比将提高6 dB以上

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