Title :
Slow Light Property Improvement and Optical Buffer Capability in Ring-Shape-Hole Photonic Crystal Waveguide
Author :
Zhai, Yi ; Tian, Huiping ; Ji, Yuefeng
Author_Institution :
State Key Lab. of Inf. Photonics & Opt. Commun., Beijing Univ. of Posts & Telecommun., Beijing, China
Abstract :
Flatband slow light in a ring-shape-hole photonic crystal waveguide (RPCW) has been theoretically investigated. Numerical results show that both the outer and inner radii of the first two rows of holes adjacent to the defect have much affect on slow light properties. Therefore, by appropriately modifying the outer and inner radii of the ring-shaped holes, the slow light property is successfully optimized. Then we further enlarge the flat bandwidth by introducing the oblique structure. The negligible dispersion bandwidths ranging from 3.57 to 24.67 nm for group indexes from 28 to 115 are obtained, respectively, which is effectively improved if compared with other RPCW structures in previous works. Moreover, we also discussed the buffer capability and signal transmission characters of the RPCW. The result shows that the proposed structure has considerable potential for optical buffering applications.
Keywords :
light transmission; numerical analysis; optical dispersion; optical waveguides; photonic crystals; slow light; dispersion bandwidths; flatband slow light; group indexes; oblique structure; optical buffer capability; ring-shape-hole photonic crystal waveguide; signal transmission; Bandwidth; Dispersion; Indexes; Optical buffering; Optical waveguides; Slabs; Slow light; Buffer capability; group velocity dispersion (GVD); photonic crystal; slow light;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2011.2165334