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Pico- and femto-second optical pulse propagation in semiconductor optical amplifiers: analysis,udoptimization and quantum transmission line modelling

机译:半导体光放大器中的微微秒和毫微微秒光脉冲传播:分析, ud优化和量子传输线建模

摘要

This thesis has theoretically and experimentally investigated the ultrashort optical pulse propagation in semiconductor optical amplifiers (SOAs), which is an important topic in the optical fiber communication and optical signal processing. Some new work has been done:udFirstly, effects of carrier heating on the ultrashort optical pulse propagation in quantum well SOAs are first studied taking into account the holes’ non-parabolic density of states; for bulk SOAs, an accurate and simple analytical method to study carrier heating effects is presented based on Fermi-Dirac integrals approximation.udSecondly, this thesis reports a novel bias current optimization method for ultrashort optical pulse distortionless amplification in SOAs based on the newly proposed bias current relation function. Detailed theoretical and experimental work is done to analyze the relation between the optimized bias current and the parameters of the input ultrashort pulse train.udFinally, a novel modelling technique-quantum transmission line modelling (Q-TLM) method is proposed by combining quantum statistic description and photon-electron dynamic interaction process description. Q-TLM is used to establish models for quantum well and quantum dot structures and analyze the dynamic performance of ultrashort optical pulse propagation in SOAs. The Q-TLM technique provides an effective method to study semiconductor optical devices.
机译:本文从理论上和实验上研究了超短光脉冲在半导体光放大器(SOA)中的传播,这是光纤通信和光信号处理中的重要课题。已经完成了一些新的工作: ud首先,考虑空穴的非抛物线态密度,首先研究了载流子加热对超短光脉冲在量子阱SOA中传播的影响。针对散装SOA,提出了一种基于费米-狄拉克积分近似的研究载流子热效应的准确而简单的分析方法。 ud其次,本文提出了一种基于新提出的用于SOA中超短光脉冲无畸变放大的偏置电流优化方法。偏置电流关系函数。进行了详尽的理论和实验工作,以分析优化的偏置电流与输入超短脉冲序列的参数之间的关系。 ud最后,结合量子统计,提出了一种新的建模技术-量子传输线建模(Q-TLM)方法描述和光电子动态相互作用过程描述。 Q-TLM用于建立量子阱和量子点结构的模型,并分析SOA中超短光脉冲传播的动态性能。 Q-TLM技术提供了一种研究半导体光学器件的有效方法。

著录项

  • 作者

    Xia Mingjun;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
  • 中图分类

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