DocumentCode :
77952
Title :
Improved Trenched Channel Plasmonic Waveguide
Author :
Heikal, A.M. ; Hameed, Mohamed Farhat O. ; Obayya, Salah S. A.
Author_Institution :
Zewail City of Sci. & Technol., Centre for Photonics & Smart Mater., Giza, Egypt
Volume :
31
Issue :
13
fYear :
2013
fDate :
1-Jul-13
Firstpage :
2184
Lastpage :
2191
Abstract :
In this paper, the modal analysis of a novel design of three trenched single mode channel plasmon polariton is introduced and analyzed using the full-vectorial finite difference method for linear oblique and curved interfaces (FVFD-LOCI). The analyzed parameters are the real effective index, propagation length, and lateral mode radius r3dB. In addition, the figure of merit (FOM) defined as the ratio between propagation length and lateral mode radius is also studied. The analysis is performed for different channel plasmon polariton (CPP) waveguides; trenched-groove, V-groove and the suggested three trenched structure over a specific spectral range (200-550 THz). The selected band of frequency is chosen to ensure the existence of the CPP fundamental mode. The reported design offers very high FOM at low frequency band (200-350 THz) compared to the well known V-groove structure. However, the lateral mode radius r3dB of the suggested three trenched structure is slightly smaller than that of the V-groove structure. For high frequency band (350-550 THz), the FOM is still higher than that of the V-groove structure while the lateral mode radius r3dB is slightly greater than that of the V-groove structure.
Keywords :
finite difference methods; light propagation; microwave photonics; modal analysis; optical design techniques; optical waveguides; plasmonics; polaritons; surface plasmons; terahertz wave spectra; CPP fundamental mode; FVFD-LOCI; V-groove channel plasmon polariton waveguide; curved interfaces; figure of merit; frequency 200 THz to 550 THz; full-vectorial finite difference method; lateral mode radius; linear oblique interfaces; modal analysis; propagation length; real effective index; trenched channel plasmonic waveguide; trenched single mode channel plasmon polariton; trenched structure; trenched-groove channel plasmon polariton waveguide; Boundary conditions; Indexes; Metals; Plasmons; Propagation losses; Rectangular waveguides; Channel Plasmon Polariton (CPP); Perfect Matched Layer (PML); Surface Plasmon Polariton (SPP); finite difference method for linear oblique and curved interfaces (FVFD-LOCI);
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2013.2264826
Filename :
6520873
Link To Document :
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