DocumentCode
3285382
Title
Three-dimensional simulation of surface plasmon polariton nanometric optical circuits by volume integral equation
Author
Tanaka, Kazuo ; Tanaka, Masahiro
fYear
2003
fDate
15-17 Oct. 2003
Firstpage
16
Lastpage
17
Abstract
Downsizing of optical circuits is one of the most important subjects in communication technology for the future. Recently, the subject of making optical circuits of nanometric scale has attracted much attention. The size and density of optical devices employing conventional optical waveguide and photonic crystals is limited by the diffraction limit of light. However, the size of optical waveguides using surface plasmon polaritons (SPPs) can be significantly decreased as compared to the conventional diffraction-limited optical waveguide. The optical circuit using SPPs is a promising candidate for nanoscale optical circuits. We propose a nanoscale optical waveguide and show, by three-dimensional numerical simulations, that this waveguide can be employed in nanometric optical circuits.
Keywords
integral equations; integrated optics; optical waveguide components; optical waveguide theory; phonon-plasmon interactions; polaritons; surface plasmons; communication technology; nanoscale optical waveguide; photonic crystals; surface plasmon polariton nanometric optical circuits; three-dimensional simulation; volume integral equation; Circuit simulation; Communications technology; Integral equations; Optical devices; Optical diffraction; Optical surface waves; Optical waveguides; Photonic crystals; Plasmons; Surface waves;
fLanguage
English
Publisher
ieee
Conference_Titel
Wireless Communication Technology, 2003. IEEE Topical Conference on
Print_ISBN
0-7803-8196-3
Type
conf
DOI
10.1109/WCT.2003.1321423
Filename
1321423
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