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Employing rhodium tripod stars for ultraviolet plasmon enhanced Fabry-Perot mode lasing

机译:采用铑三脚架的紫外线等离子体增强型法布里 - 珀罗模式激光

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摘要

Plasmon-enhanced semiconductor optoelectronic devices, particularly lasers, have attracted intense interest due to their significantly improved optical quality and the presence of microresonators. In this work, Rh tripod stars (RhNTSs) with tunable plasmonic properties in the ultraviolet band were synthesized and spin-coated on the surface of a single ZnO microwire, different from the traditional sputtering method. The near-band-edge emission of the ZnO microwire was significantly enhanced due to the presence of the RhNTSs on the surface. Additionally, the bilateral smooth surface of the single ZnO microwire with rectangular-shaped cross section enabled the achievement of lateral-resonator Fabry-Perot (FP) microlasers. Thus, a special FP mode is adopted to investigate the modulation effect of RhNTS plasmons with ultraviolet response on the lasing properties of the single ZnO microwire. Upon resonant ultraviolet excitation, the deposited RhNTSs on the surface of the ZnO microwire can be utilized to improve the FP lasing performance, specifically to decrease the threshold and enhance the lasing output. The enhanced performance of the ZnO microwire originates from the localized-field enhancement induced by the RhNTSs, which can compensate for the optical loss and promote more radiative photons into the FP microresonators. These results indicate that the RhNTSs with unique ultraviolet plasmonic features can be extensively employed to enhance the optoelectronic performances of wide bandgap semiconductor materials and devices, suggesting their potential applications in ultraviolet light-emitting diodes and lasers, photodetectors and so on.
机译:等离子体增强的半导体光电器件,特别是激光器,由于它们显着提高了光学质量和微小器的存在而引起了强烈的兴趣。在这项工作中,在紫外线带中的可调谐等离子体性能的RH三脚架(RHNTS)被合成并在单个ZnO微线的表面上旋转,与传统的溅射法不同。由于表面上的rhnts存在,ZnO微线的近带边缘发射显着增强。另外,具有矩形横截面的单个ZnO微线的双侧光滑表面使得实现横向谐振器法布里 - 珀罗(FP)微溶剂。因此,采用特殊的FP模式来研究RHNTS等离子体在单个ZnO微线的激光特性上具有紫外线的调制效果。在谐振紫外线激励时,可以利用ZnO微线表面上的沉积rhNTs来改善FP激光性能,具体地,以降低阈值并增强激光输出。 ZnO微线的增强性能来自由rhNTS引起的局部局部增强,这可以补偿光学损耗并促进更多辐射光子进入FP微谐振器。这些结果表明,具有独特的紫外等离子体特征的rhnts可以广泛地用于增强宽带隙半导体材料和器件的光电性能,表明它们在紫外发光二极管和激光器,光电探测器等中的潜在应用。

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  • 来源
    《CrystEngComm》 |2020年第34期|共9页
  • 作者单位

    Nanjing Univ Aeronaut &

    Astronaut Coll Sci 29 Jiangjun Rd Nanjing 211106 Peoples R China;

    Nanjing Univ Aeronaut &

    Astronaut Coll Sci 29 Jiangjun Rd Nanjing 211106 Peoples R China;

    Nanjing Univ Aeronaut &

    Astronaut Coll Sci 29 Jiangjun Rd Nanjing 211106 Peoples R China;

    Nanjing Univ Aeronaut &

    Astronaut Coll Sci 29 Jiangjun Rd Nanjing 211106 Peoples R China;

    Nanjing Univ Aeronaut &

    Astronaut Coll Sci 29 Jiangjun Rd Nanjing 211106 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;晶体学;
  • 关键词

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