DocumentCode
1199718
Title
Coupling properties in a 2-D photonic crystal slab directional coupler with a triangular lattice of air holes
Author
Tanaka, Y. ; Nakamura, H. ; Sugimoto, Y. ; Ikeda, N. ; Asakawa, K. ; Inoue, K.
Author_Institution
Femtosecond Technol. Res. Assoc., Tsukuba, Japan
Volume
41
Issue
1
fYear
2005
Firstpage
76
Lastpage
84
Abstract
Two-dimensional (2-D) photonic crystal (PC) directional couplers (DCs) that have a triangular lattice pattern of air holes in a planar dielectric slab are theoretically and experimentally analyzed. Unlike the 2-D PC DC structure with a dielectric rod in air, which is frequently used in theoretical studies, more practical PC DCs tend to be multimode in nature and exhibit a large group velocity dispersion, thus creating decoupling points in the dispersion relation without any additional modifications to the structure. The multimode nature and large dispersion lead to interference which degrades the coupling properties. By inserting three rows of air holes between neighboring line-defect waveguides in order to separate them, we have successfully reduced the multimode region and obtained a single-mode region. In this case, the large dispersion allows the creation of a PC DC with wavelength selectivity and a coupling length as short as 30 a,/spl sim/10 /spl mu/m for a=345 nm, where a is the lattice constant. The transmission spectra obtained experimentally showed good agreement with the theory whereas their transmission ranges were restricted to those of bent waveguides. These results are encouraging for practical application to optical communications.
Keywords
infrared spectra; optical directional couplers; photonic crystals; 2-D photonic crystal slab directional coupler; coupling length; decoupling; dispersion relation; group velocity dispersion; lattice constant; line-defect waveguides; transmission spectra; triangular air hole lattice; wavelength selectivity; Dielectrics; Directional couplers; Dispersion; Distributed control; Lattices; Optical waveguides; Pattern analysis; Photonic crystals; Slabs; Two dimensional displays; Directional coupler (DC); optical integrated circuit; photonic crystals (PCs);
fLanguage
English
Journal_Title
Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
0018-9197
Type
jour
DOI
10.1109/JQE.2004.838541
Filename
1375037
Link To Document