DocumentCode
1359651
Title
Characterization of Plasmonic Modes in a Low-Loss Dielectric-Coated Hollow Core Rectangular Waveguide at Terahertz Frequency
Author
Rahman, B.M.A. ; Quadir, Anita ; Tanvir, Huda ; Grattan, K.T.V.
Author_Institution
Sch. of Eng. & Math. Sci., City Univ. London, London, UK
Volume
3
Issue
6
fYear
2011
Firstpage
1054
Lastpage
1066
Abstract
In this paper, a low-loss hollow-core rectangular plasmonic waveguide with a dielectric coating of Teflon is analyzed for terahertz (2.5 THz) propagation using a full-vectorial finite-element method (FEM). The modal properties of the waveguide, their effective indices, and power confinements have been calculated with a particular emphasis on the loss characteristics of the different modes. It has been observed that the loss characteristics of the guide are greatly affected by the thickness of the dielectric coating. It has been identified that, in contrast to the fundamental H10x mode, the H12x mode shows interesting modal properties and offers the lowest possible loss for the structure. This mode also tends to yield a near-Gaussian field profile when the dielectric coating thickness is optimized. The optimization of the loss values has been evaluated by comparing the loss characteristics for different dielectric materials, as well as by using different metal claddings.
Keywords
dielectric materials; finite element analysis; optical fibre cladding; optical waveguides; plasmonics; rectangular waveguides; Teflon; dielectric coating thickness; dielectric materials; frequency 2.5 THz; full-vectorial finite-element method; hollow-core rectangular plasmonic waveguide; low-loss dielectric-coated hollow core; metal claddings; near-Gaussian field profile; plasmonic modes; power confinements; rectangular waveguide; terahertz frequency; terahertz propagation; Dielectric losses; Metals; Optical waveguides; Plasmons; Rectangular waveguides; Finite-element method (FEM); metal-clad dielectric-coated rectangular waveguides; modal solutions; surface plasmon modes (SPMs); terahertz (THz) waveguides;
fLanguage
English
Journal_Title
Photonics Journal, IEEE
Publisher
ieee
ISSN
1943-0655
Type
jour
DOI
10.1109/JPHOT.2011.2173326
Filename
6059468
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