DocumentCode :
918289
Title :
Two-Dimensional Ferroelectric Photonic Crystal Waveguides: Simulation, Fabrication, and Optical Characterization
Author :
Lin, Pao Tai ; Yi, Fei ; Ho, Seng-Tiong ; Wessels, Bruce W.
Author_Institution :
Dept. of Mater. Sci. & Eng., Northwestern Univ., Evanston, IL, USA
Volume :
27
Issue :
19
fYear :
2009
Firstpage :
4330
Lastpage :
4337
Abstract :
The optical properties of two dimensional photonic crystal (PhC) waveguides were investigated using ferroelectric barium titanate (BTO) thin films as the optical medium. The photonic band structure was calculated using a 2-D finite difference time domain (FDTD) method; a broad band gap is observed that results from the high refractive index contrast. The simulated transmission spectra indicate the stop band of PhC is mainly determined by three parameters: lattice constant, refractive index contrast, and waveguide mode order. From transmission measurements the PhC with a lattice constant a = 420 nm shows a strong light dispersion and the other PhC with a = 450 nm shows a 120-nm broad stop band. Strong localization of visible light within the PhC cavities is demonstrated from the light scattering images. The observed strong light confinement and its spatial intensity profile due to resonance agree with the calculated profiles. From polarized optical microscopy we discovered the scattered light wavelength was highly sensitive to magnitude of the lattice constant. The optical scattering properties indicate BTO PhC can potentially serve as micrometer size electro-optically tunable switches and color filters.
Keywords :
barium compounds; ferroelectric materials; ferroelectric thin films; finite difference time-domain analysis; lattice constants; light scattering; light transmission; nanophotonics; optical dispersion; optical fabrication; optical microscopy; optical waveguides; photonic band gap; photonic crystals; refractive index; 2-D finite difference time domain method; BaTiO3; band gap; ferroelectric thin films; lattice constant; light confinement; light dispersion; optical scattering; photonic band structure; polarized optical microscopy; refractive index; resonance; spatial intensity profile; stop band; transmission spectra; two-dimensional photonic crystal waveguides; visible light localization; waveguide mode order; Photonic crystal waveguides; ferroelectric oxide thin films; finite-difference time-domain simulation; optical switches;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2009.2023808
Filename :
4982661
Link To Document :
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