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Bipolar cascade lasers

机译:双极级联激光器

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摘要

This thesis addresses issues of the design and modeling of the Bipolar Cascade Laser (BCL), a new type of quantum well laser. BCLs consist of multiple single stage lasers electrically coupled via tunnel junctions. The BCL ideally operates by having each injected electron participate in a recombination event in the topmost active region, then tunnel from the valence band of the first active region into the conduction band of the next active region, participate in another recombination event, and so on through each stage of the cascade. As each electron may produce more than one photon the quantum efficiency of the device can, in theory, exceed 100%. This work resulted in the first room temperature, continuous-wave operation of a BCL, with a record 99.3% differential slope efficiency. The device was fully characterized and modeled to include light output and voltage versus current bias, modulation response and thermal properties. A new singlemode bipolar cascade laser, the bipolar cascade antiresonant reflecting optical waveguide laser, was proposed and modeled.
机译:本文解决了新型量子阱激光器双极级联激光器(BCL)的设计和建模问题。 BCL由多个通过隧道结电耦合的单级激光器组成。理想情况下,BCL的运行方式是让每个注入的电子参与最顶部有源区域中的重组事件,然后从第一个有源区域的价带隧穿至下一个有源区域的导带,并参与另一个重组事件,依此类推通过级联的每个阶段。由于每个电子可以产生一个以上的光子,因此该器件的量子效率理论上可以超过100%。这项工作导致了BCL在室温下连续波运行,差斜率效率达到了创纪录的99.3%。该器件已经过全面表征和建模,包括光输出和电压与电流偏置,调制响应和热特性。提出并建模了一种新型的单模双极级联激光器,即双极级联反谐振反射光波导激光器。

著录项

  • 作者

    Patterson Steven Gregory;

  • 作者单位
  • 年度 2000
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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