Ultra High Quality Factor Microtoroid for Chemical and Biomedical Sensing Applications

Abstract

Optical whispering gallery mode (WGM) microcavities have drawn attentions in various types of sensing, such as chemical- and bio-sensing. Even though various types of microcavity geometries have been investigated, research about on-chip WGM toroidal resonator has been discontinued for the sensing applications in aquatic environment. The strong benefits of the microtoroid are ultra-high-Q and small mode volume leading to high sensitivity to small change of environment, surrounding media refractive index change or light scatterer induced effective refractive index change. By using this ultra high-Q WGM resonator, radius greater than 75nm polystyrene nanoparticle are detected in aquatic environment. In addition to polystyrene nanoparticle sensing, individual synthetic hemozoin crystals are detected and its size is measured. The hemozoin crystal sensing ultimately leads to malaria infection diagnose. A sol-gel method fabricated microlaser, co-work with Lina He, extended the sensing capability, detecting greater than 30nm radius polystyrene nanoparticle. Since the water experiment is challenging and tackling the difficulty is main task, theoretical investigations are performed about WGM resonance quality factor, resonator mode volume, and noise to minimum detectable particle size. The research described in this dissertation will shed light on advanced chemical- and bio-sensor developments.

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Document Details

Document Type
Technical Report
Publication Date
Aug 01, 2013
Accession Number
ADA623693

Entities

People

  • Woosung Kim

Organizations

  • Washington University in St. Louis

Tags

Communities of Interest

  • Advanced Electronics
  • Biomedical
  • Energy and Power Technologies

DTIC Thesaurus Topics

  • Computational Science
  • Detection
  • Detectors
  • Electric Fields
  • Electromagnetic Fields
  • Fluids
  • Frequency Shift
  • Geometry
  • Lasers
  • Light Scattering
  • Measurement
  • Medical Personnel
  • Optical Detection
  • Optical Properties
  • Scattering
  • Spectra
  • Surface Plasmon Resonance

Fields of Study

  • Physics

Readers

  • Nanocomposite Materials Science
  • Optical Physics and Photonics.
  • Quantum Dot Semiconductor Device Photonics and Graphene Optoelectronic Materials and THz Physics.

Technology Areas

  • Biotechnology