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Microwave-optoelectronic modelling approaches for semiconductor lasers

机译:半导体激光器的微波光电建模方法

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摘要

A study into semiconductor-laser modelling approaches for the microwave/ millimetre-wave frequency regime is presented. Two approaches have been investigated in detail. First, an integrated-equivalent-circuit model which covers both parasitic and intrinsic components of the laser has been implemented in a microwave-circuit simulator. The potential of this modelling approach has been demonstrated by simulating complete optical transmitters (including external circuits). Secondly, a combined model which includes part of the equivalent-circuit model and a numerical time- domain model based on coupled-wave theory has been developed. This combined model permits the modelling of both electrical and optical characteristics for more complex laser structures and it has been employed in applications such as circuit design for chirp and intensity-fluctuation suppression with multielectrode distributed feedback (DFB) lasers and an investigation into distributed microwave effects on the short pulses generated from a single-electrode DFB laser under gain-switched conditions.
机译:提出了对微波/毫米波频率范围的半导体激光建模方法的研究。已经详细研究了两种方法。首先,已经在微波电路模拟器中实现了涵盖激光器寄生和本征分量的集成电路等效电路模型。通过模拟完整的光发射器(包括外部电路),已经证明了这种建模方法的潜力。其次,基于耦合波理论,建立了包括部分等效电路模型和数值时域模型的组合模型。该组合模型允许对更复杂的激光结构进行电学和光学特性建模,并且已被用于多种应用,例如用于多线性分布反馈(DFB)激光器的chi声和强度波动抑制电路设计以及对分布式微波效应的研究在增益切换条件下,单电极DFB激光器产生的短脉冲产生的影响。

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