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Quasi 3-D Simulation of Quantum Well DFB Lasers

机译:量子阱DFB激光器的准3D模拟

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摘要

A quasi-3 D simulation for quantum well (QW) distributed feedback (DFB) laser diodes is presented. Longitudinal effects such as the nonuniformity of the optical intensity, local gain and spontaneous emission are considered as well els lateral effects such as current spreading and quantum carrier capture. The simulation is performed by solving several 2-D cross-sections using Minilase II and a 1-D longitudinal solver in a self-consistent fashion.rnAs an example an analysis of spatial hole burning in a A/4 phase shifted DFB laser is given. It is shown that spatial hole burning (SHB) results in a local gain saturation and is mainly restricted to electrons and holes within the QW.
机译:提出了量子阱(QW)分布式反馈(DFB)激光二极管的准3 D仿真。纵向效应,例如光强度的不均匀性,局部增益和自发发射,也被认为是横向效应,例如电流扩展和量子载流子捕获。通过使用Minilase II和一维纵向求解器以自洽的方式求解几个2-D横截面来进行仿真。作为一个例子,给出了对A / 4相移DFB激光器中空间空穴燃烧的分析。结果表明,空间空穴燃烧(SHB)会导致局部增益饱和,并且主要限于量子阱中的电子和空穴。

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