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Low-Loss Hollow Waveguide Platforms for Optical Sensing and Manipulation.

机译:用于光学传感和操纵的低损耗空心波导平台。

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摘要

This dissertation presents a method for fabricating integrated hollow and solid optical waveguides on planar substrates. These waveguides are antiresonant reflecting optical waveguides (ARROWs), where high-index cladding layers confine light to hollow cores through optical interference. Hollow waveguides that can be filled with liquids or gases are an important new building block for creating highly-integrated optical sensors.;The method developed for fabricating these integrated waveguides employs standard processes and materials used in the microelectronics industry, allowing for parallel, low-cost fabrication. Dielectric cladding layers are deposited on a silicon wafer using plasma-enhanced chemical vapor deposition (PECVD). After the lower cladding layers have been deposited, a sacrificial material is deposited and patterned using photolithography to produce the hollow-core shape. After the sacrificial cores are defined, they are coated with additional PECVD dielectric layers to form the sides and tops of the waveguides. Integrated solid-core waveguides can be easily created by etching a ridge into the top dielectric cladding layer. Finally, the ends of the sacrificial cores are exposed and removed with an acid solution, resulting in hollow waveguides.;Improved optical performance for integrated ARROW platforms can be achieved by only using a single over-coating for the cladding on the sides and top of the hollow waveguide. Such a structure resulted in 70% improvement in optical throughput for the platforms and increased sensitivity for optical manipulation and fluorescence detection of single particles, including viruses. Reduced loss for the hollow waveguides can be obtained by surrounding the core with a terminal layer of air on the sides and top of the waveguide. Such devices were created by forming the hollow waveguides on top of a pedestal on the silicon substrate. This process produces the ideal geometry for hollow ARROW waveguides, and loss measurements of waveguides with air-filled cores had loss coefficients of 1.54 cm-1, which is the lowest achieved for air-core ARROWs.;Keywords: hollow waveguides, ARROW, PECVD, SU-8, sacrificial etching, plasma etching
机译:本文提出了一种在平面基板上制造集成的空心和固态光波导的方法。这些波导是反共振反射光波导(ARROW),其中高折射率包层通过光干涉将光限制在空心中。可以填充液体或气体的空心波导是创建高度集成的光学传感器的重要新组成部分。用于制造这些集成波导的方法采用微电子行业中使用的标准工艺和材料,从而实现了并行,低功耗造价。使用等离子体增强化学气相沉积(PECVD)将介电覆层沉积在硅晶片上。在沉积下覆层之后,沉积牺牲材料并使用光刻法对其进行图案化以产生空心形状。在定义牺牲芯之后,在其上涂覆额外的PECVD电介质层,以形成波导的侧面和顶部。通过将脊刻蚀到顶部电介质包层中,可以轻松创建集成的实芯波导。最后,牺牲性芯的末端被暴露,并用酸溶液去除,从而形成空心波导。集成式ARROW平台的光学性能得以改善,仅对外壳的侧面和顶部使用单一的外涂层即可实现空心波导。这种结构导致平台的光通过量提高了70%,并提高了对包括病毒在内的单个颗粒的光学操作和荧光检测的灵敏度。空心波导的损耗可以通过在波导的侧面和顶部上的空气周围包裹芯层来获得。通过在硅衬底上的基座顶部上形成中空波导来创建这样的器件。此过程可为空心ARROW波导提供理想的几何形状,并且带气芯的波导的损耗测量的损耗系数为1.54 cm-1,这是空心ARROW的最低损耗系数。 ,SU-8,牺牲蚀刻,等离子蚀刻

著录项

  • 作者

    Lunt, Evan J.;

  • 作者单位

    Brigham Young University.;

  • 授予单位 Brigham Young University.;
  • 学科 Engineering Electronics and Electrical.;Physics Optics.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 235 p.
  • 总页数 235
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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