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Modeling and design of intra-cavity frequency doubled green lasers.

机译:腔内倍频绿色激光器的建模和设计。

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摘要

This thesis is an exploration of numerical modeling and design of intra-cavity frequency doubled green lasers, which is one of the three key light sources in laser display systems.;A plane-wave based coupled-wave model is implemented to model miniature intra-cavity frequency doubled DPSS lasers. Good agreement between the plane-wave model and experiment has been obtained. By employing the plane-wave model, we have explained the phase problem in our optical contact Nd:YVO4/MgO:PPLN green laser. Design examples of wide temperature operation of Nd:YVO 4/MgO:PPLN green lasers are also completed by this numerical method.;Finally, to model high power bulk intra-cavity frequency doubled diode-pumped solid-state (DPSS) green lasers, a three-dimensional coupled-wave model is developed and compared with experimental results. A two-dimensional thermal model is incorporated into the three-dimensional coupled-wave equations to model thermal lensing and thermal de-phasing effects in intra-cavity frequency doubled DPSS lasers. The numerical models we developed are validated by the experimental results.;In this thesis the time-domain traveling wave (TDTW) model, which is well developed to model integrated photonic devices, is derived for modeling and design of a new proposed device. The device is based on the intra-cavity frequency doubling of high power distributed Bragg reflector laser diodes (DBR-LD) and MgO-doped periodically poled lithium niobate (MgO:PPLN) waveguides. The numerical modeling and design suggest the superiority of the proposed intra-cavity frequency doubled DBR-LD/MgO:PPLN green laser over traditional single-pass frequency doubled DBRLD-LD/MgO:PPLN green laser.
机译:本文是对腔内倍频绿色激光的数值建模与设计的探索,它是激光显示系统中的三个关键光源之一。腔频率加倍的DPSS激光器。在平面波模型与实验之间已经取得了很好的一致性。通过使用平面波模型,我们已经解释了光接触Nd:YVO4 / MgO:PPLN绿色激光器中的相位问题。 Nd:YVO 4 / MgO:PPLN绿光激光器在宽温度范围内的设计实例也通过该数值方法完成。最后,为模拟大功率腔内倍频二极管泵浦固态(DPSS)绿光激光器,建立了三维耦合波模型,并与实验结果进行了比较。将二维热模型合并到三维耦合波方程中,以对腔内倍频DPSS激光器中的热透镜效应和热相移效应进行建模。实验结果验证了我们建立的数值模型的正确性。本文提出了时域行波(TDTW)模型,该模型是为集成光子器件建模而精心开发的,用于新型器件的建模和设计。该器件基于高功率分布式布拉格反射器激光二极管(DBR-LD)和掺有MgO的周期性极化铌酸锂(MgO:PPLN)波导的腔内倍频。数值建模和设计表明,所提出的腔内倍频DBR-LD / MgO:PPLN绿色激光优于传统的单倍频倍DBRLD-LD / MgO:PPLN绿色激光。

著录项

  • 作者

    Xu, Qingyang.;

  • 作者单位

    McMaster University (Canada).;

  • 授予单位 McMaster University (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 100 p.
  • 总页数 100
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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