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Ultraviolet lasing behavior in ZnO optical microcavities

机译:ZnO光学微腔中的紫外激光行为

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Zinc oxide (ZnO) optical microcavity modulated UV lasers have been attracting a wide range of research interests. As one of the most important materials in developing high quality microcavity and efficient UV–visible optoelectronic devices due to its wide band gap (3.37?eV) and large exciton binding energy (~60?meV). In this review, we summarized the latest development of ZnO optical cavity based microlasers, mainly including Fabry-Perot mode lasers and whispering gallery mode lasers. The synthesis and optical studies of ZnO optical microcavities with different morphologies were discussed in detail. Finally, we also consider that the research focus in the near future would include new nanotechnology and physical effects, such as nano/micro fabrication, surface plasmon enhancement, and quantum dot coupling, which may result in new and interesting physical phenomena.
机译:氧化锌(ZnO)光学微腔调制UV激光器已引起广泛的研究兴趣。由于其宽带隙(3.37?eV)和大的激子结合能(〜60?meV),是开发高质量微腔和高效紫外可见光电子器件的最重要材料之一。在这篇综述中,我们总结了基于ZnO光腔的微激光器的最新发展,主要包括Fabry-Perot模式激光器和耳语画廊模式激光器。详细讨论了不同形态的ZnO光学微腔的合成和光学研究。最后,我们还认为,在不久的将来,研究重点将包括新的纳米技术和物理效应,例如纳米/微加工,表面等离子体激元增强和量子点耦合,这可能会导致新的有趣的物理现象。

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