DocumentCode :
1497302
Title :
High Quality-Factor 1-D-Suspended Photonic Crystal/Photonic Wire Silicon Waveguide Micro-Cavities
Author :
Zain, Ahmad Rifqi Md ; Johnson, Nigel P. ; Sorel, Marc ; De La Rue, Richard M.
Author_Institution :
Dept. of Electron. & Electr. Eng., Univ. of Bristol, Bristol, UK
Volume :
21
Issue :
24
fYear :
2009
Firstpage :
1789
Lastpage :
1791
Abstract :
We have successfully fabricated and characterized suspended one-dimensional (1-D) photonic crystal/photonic wire (PhC/PhW) waveguide micro-cavities based on silicon-on-insulator (SOI). Our experiments have shown an enhancement of the resonance Q -factor from 18 700 to approximately 24 000, with normalized optical transmission of 70%, after removing the silica cladding underneath the silicon waveguide. We have also demonstrated that, for this condition, the resonance peak wavelength can be controlled by varying the length of the micro-cavity. These results were obtained by removing the silica cladding below the silicon waveguide to produce a ldquohangingrdquo wire waveguide. The three-dimensional (3-D) finite-difference time domain (FDTD) simulation approach used shows good agreement with measured results.
Keywords :
Q-factor; finite difference time-domain analysis; microcavities; optical waveguides; photonic crystals; silicon-on-insulator; 1D-suspended photonic crystal; 3D finite-difference time domain; high quality-factor; photonic crystal/photonic wire; photonic wire silicon waveguide microcavities; resonance Q -factor; silicon-on-insulator; Integrated optics; membrane photonics; photonic crystals (PhCs); photonic wires (PhWs); silicon-on-insulator (SOI);
fLanguage :
English
Journal_Title :
Photonics Technology Letters, IEEE
Publisher :
ieee
ISSN :
1041-1135
Type :
jour
DOI :
10.1109/LPT.2009.2033712
Filename :
5282614
Link To Document :
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