DocumentCode
83599
Title
Vertical Directional Couplers With Ultra-Short Coupling Length Based on Hybrid Plasmonic Waveguides
Author
Cheng-Han Du ; Yih-Peng Chiou
Author_Institution
Grad. Inst. of Photonics & Optoelectron., Nat. Taiwan Univ., Taipei, Taiwan
Volume
32
Issue
11
fYear
2014
fDate
June1, 1 2014
Firstpage
2065
Lastpage
2071
Abstract
We propose and analyze a series of vertical directional couplers based on SOI-compatible hybrid plasmonic waveguides. We investigate two configurations: metal-insulator-metal (MIM) and insulator-metal-insulator (IMI). Both slab and three-dimensional analyses show that MIM directional couplers have better coupling performance such as sub-micron coupling length and lower loss. To ensure the normalized power loss lower than 5%, the coupling length can be chosen as short as 0.492 μm (about one third of the wavelength 1.55 μm). The coupler size can be traded for even lower power loss. In one example, a less-compact design yields 3% power loss, while maintains sub-micron coupling length. We further verified our design with beam propagation analysis. The analysis independently verifies the compact MIM design does show guided mode coupling length along vertical direction can be as short as 0.492 μm.
Keywords
MIM devices; light propagation; optical design techniques; optical directional couplers; optical losses; optical waveguides; plasmonics; silicon-on-insulator; IMI; MIM directional couplers; SOI-compatible hybrid plasmonic waveguides; beam propagation analysis; compact MIM design; coupler size; coupling performance; guided mode coupling length; insulator-metal-insulator; less-compact design; metal-insulator-metal; normalized power loss; optical loss; size 0.492 mum; slab analysis; sub-micron coupling length; three-dimensional analyses; ultra-short coupling length; vertical directional couplers; wavelength 1.55 mum; Couplings; Directional couplers; Metals; Optical waveguides; Plasmons; Silicon; Hybrid plasmonic waveguides; vertical directional coupler; waveguide mode analysis;
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/JLT.2014.2318182
Filename
6800044
Link To Document