• DocumentCode
    189968
  • Title

    Accurate wavelength prediction of photonic crystal resonant reflection and applications in refractive index measurement

  • Author

    Hermannsson, Petur Gordon ; Vannahme, Christoph ; Smith, Cameron L. C. ; Kristensen, Anders

  • Author_Institution
    Dept. of Micro- & Nanotechnol., Tech. Univ. of Denmark, Lyngby, Denmark
  • fYear
    2014
  • fDate
    2-5 Nov. 2014
  • Firstpage
    1399
  • Lastpage
    1402
  • Abstract
    In the past decade, photonic crystal resonant reflectors have been increasingly used as the basis for label-free biochemical assays in lab-on-a-chip applications. In both designing and interpreting experimental results, an accurate model describing the optical behavior of such structures is essential. Here, an analytical method for precisely predicting the absolute positions of resonantly reflected wavelengths is presented. The model is experimentally verified to be highly accurate using nanoreplicated, polymer-based photonic crystal grating reflectors with varying grating periods and superstrate materials. The importance of accounting for material dispersion in order to obtain accurate simulation results is highlighted, and a method for doing so using an iterative approach is demonstrated. Furthermore, an application for the model is demonstrated, in which the material dispersion of a liquid is extracted from measured resonance wavelengths.
  • Keywords
    bio-optics; biochemistry; biological techniques; diffraction gratings; iterative methods; lab-on-a-chip; light reflection; nanobiotechnology; nanophotonics; optical elements; optical polymers; photonic crystals; refractive index measurement; accurate wavelength prediction; grating periods; iterative approach; lab-on-a-chip applications; label-free biochemical assays; material dispersion; nanoreplicated polymer-based photonic crystal grating reflectors; photonic crystal resonant reflection; photonic crystal resonant reflectors; refractive index measurement; resonantly reflected wavelengths; superstrate materials; Dispersion; Gratings; Optical waveguides; Polymers; Refractive index; Wavelength measurement;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    SENSORS, 2014 IEEE
  • Conference_Location
    Valencia
  • Type

    conf

  • DOI
    10.1109/ICSENS.2014.6985274
  • Filename
    6985274