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Surface nanoscale axial photonics at a capillary fiber

机译:毛细管纤维的表面纳米级轴向光子

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摘要

We present the theory and first experimental demonstration, to the best of our knowledge, of a sensing platform based on surface nanoscale axial photonics (SNAP) at a capillary fiber. The platform explores optical whispering gallery modes, which circulate inside the wall of a capillary and slowly propagate along its axis. Due to the small thickness of the capillary wall, these modes are sensitive to spatial and temporal variations of the refractive index of the media adjacent to the internal capillary surface. In particular, the developed theory allows us to determine the internal effective radius variation of the capillary from the measured mode spectra. Experimentally, a SNAP resonator is created by local annealing of the capillary with a focused CO2 laser followed by internal etching with hydrofluoric acid. The comparison of the spectra of this resonator in the cases when it is empty and filled with water allows us to determine the internal surface nonuniformity introduced by etching. The results obtained pave the way for a novel advanced approach in sensing of media adjacent to the internal capillary surface and, in particular, in microfluidic sensing.
机译:我们提出的理论和先行试点示范,以最好的我们的知识的基础上,在毛细纤维表面的纳米光子学的轴向(SNAP)的检测平台。该平台探讨光学回音壁模式,其中循环的毛细管的壁内,慢慢地沿其轴线传播。由于毛细管壁的厚度小,这些模式是到邻近内部毛细管表面的介质的折射率的空间和时间变化敏感。特别是,发达的理论使我们能够确定从测量的模式光谱毛细管的内部有效半径的变化。在实验上,一个SNAP谐振器由用聚焦CO2激光,然后用氢氟酸蚀刻内部毛细管的局部退火创建。该谐振器在箱子的光谱的比较时,它是空的,填充有水使我们能够确定通过蚀刻引入的内表面的不均匀性。结果铺垫在感测的接近内部毛细管表面,并且在特定的媒体,在微流控传感得到一种新颖先进的方法。

著录项

  • 来源
    《Optics Letters》 |2017年第16期|共4页
  • 作者单位

    Concordia Univ Montreal PQ H4B 1R6 Canada;

    Aston Univ Aston Inst Photon Technol Birmingham B4 7ET W Midlands England;

    OFS Labs 19 Schoolhouse Rd Somerset NJ 08873 USA;

    Concordia Univ Montreal PQ H4B 1R6 Canada;

    Aston Univ Aston Inst Photon Technol Birmingham B4 7ET W Midlands England;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 计量学;光学;
  • 关键词

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