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首页> 外文期刊>American Journal of Optics and Photonics >Electron-Hole and Photon Recombination Processes in Quantum Well Semiconductor Lasers
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Electron-Hole and Photon Recombination Processes in Quantum Well Semiconductor Lasers

机译:量子阱半导体激光器中的电子孔和光子复合过程

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The success obtained from semiconductor laser devices is dependent on the science of manipulating the electron-hole and the photon. While the most useful interaction in the laser is the recombination process that involves the electron and holes to produce a photon, other non-useful processes also occur and in some cases overshadow the preferred recombination process. In this review article, the physics behind radiative and non-radiative recombination processes and loss mechanisms dominant in quantum well semiconductor lasers is presented. The work concludes by suggesting possible solutions based on relevant published works.
机译:从半导体激光器件获得的成功取决于操纵电子空穴和光子的科学。虽然激光中最有用的相互作用是涉及电子和空穴以产生光子的重组过程,但其他无用的过程也会发生,并且在某些情况下会掩盖首选的重组过程。在这篇综述文章中,介绍了量子阱半导体激光器中辐射和非辐射重组过程背后的物理原理以及损耗机理。最后,工作是根据相关已发表的作品提出可能的解决方案。

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