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Enhancing the radiation efficiency of dye doped microresonators using coupling effects with a suspended core microstructured optical fiber

机译:利用悬浮芯微结构光纤的耦合效应提高染料掺杂的微谐振器的辐射效率

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摘要

Recently we demonstrated that a dye-doped microresonator positioned onto the tip of a suspended core Microstructured Optical Fiber can be used as a dip sensor. In this architecture, the resonator is located on an air hole next to the fiber core, enabling a significant portion of the sphere to overlap with the guided light emerging from the fiber tip. When the resonator is excited through the suspended core fiber it exhibits an unusually high radiative efficiency, which was initially attributed to the higher excitation efficiency enabled by this architecture.Here we demonstrate that it is possible to enhance the radiative emission of a microresonator attached to the suspended core fiber tip by changing the size of the resonator and how it is positioned on the fiber tip. In particular, we have found that the way in which the sphere interacts with the air hole cavity of the suspended core fiber significantly changes its emission characteristics. We found that the enhancement was dependent upon the interaction between the modes of the resonator with the confined geometry of the suspended core fiber rather than a higher excitation efficiency alone. We also evaluate the impact of the radiative enhancement on the WGM lasing threshold in different configurations.
机译:最近,我们证明了位于悬浮芯微结构光纤尖端上的染料掺杂微谐振器可以用作倾角传感器。在这种架构中,谐振器位于靠近光纤纤芯的气孔中,从而使球体的大部分与从光纤尖端发出的引导光重叠。当谐振器通过悬空的芯纤维被激发时,它会表现出异常高的辐射效率,这最初归因于这种架构所带来的更高的激发效率。在这里,我们证明可以增强连接到谐振器上的微谐振器的辐射发射。通过改变谐振器的尺寸及其在光纤尖端上的放置方式,将芯线悬挂在光纤芯上。特别是,我们发现球体与悬浮芯纤维的气孔腔相互作用的方式显着改变了其发射特性。我们发现,增强取决于共振器的模式与悬浮纤芯纤维的有限几何形状之间的相互作用,而不是单独的更高的激发效率。我们还评估了辐射增强对不同配置中WGM激光阈值的影响。

著录项

  • 来源
  • 会议地点 San Francisco CA(US)
  • 作者单位

    The Institute for Photonics and Advanced Sensing (IPAS), School of Chemistry and Physics, The University of Adelaide, Adelaide SA 5005, Australia;

    The Institute for Photonics and Advanced Sensing (IPAS), School of Chemistry and Physics, The University of Adelaide, Adelaide SA 5005, Australia;

    The Institute for Photonics and Advanced Sensing (IPAS), School of Chemistry and Physics, The University of Adelaide, Adelaide SA 5005, Australia;

    The Institute for Photonics and Advanced Sensing (IPAS), School of Chemistry and Physics, The University of Adelaide, Adelaide SA 5005, Australia;

    The Institute for Photonics and Advanced Sensing (IPAS), School of Chemistry and Physics, The University of Adelaide, Adelaide SA 5005, Australia;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biosensors; Whispering Gallery Mode; Microstructured Optical Fiber; Fluorescence;

    机译:生物传感器;耳语画廊模式;微结构光纤;荧光性;
  • 入库时间 2022-08-26 13:52:01

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