DocumentCode :
972074
Title :
Finite-Difference Time-Domain Study of Guided Modes in Nano-Plasmonic Waveguides
Author :
Zhao, Yan ; Hao, Yang
Author_Institution :
Univ. of London, London
Volume :
55
Issue :
11
fYear :
2007
Firstpage :
3070
Lastpage :
3077
Abstract :
A conformal dispersive finite-difference time-domain (FDTD) method is developed for the study of one-dimensional (1-D) plasmonic waveguides formed by an array of periodic infinite-long silver cylinders at optical frequencies. The curved surfaces of circular and elliptical inclusions are modelled in orthogonal FDTD grid using effective permittivities (EPs) and the material frequency dispersion is taken into account using an auxiliary differential equation (ADE) method. The proposed FDTD method does not introduce numerical instability but it requires a fourth-order discretisation procedure. To the authors´ knowledge, it is the first time that the modelling of curved structures using a conformal scheme is combined with the dispersive FDTD method. The dispersion diagrams obtained using EPs and staircase approximations are compared with those from the frequency domain embedding method. It is shown that the dispersion diagram can be modified by adding additional elements or changing geometry of inclusions. Numerical simulations of plasmonic waveguides formed by seven elements show that row(s) of silver nanoscale cylinders can guide the propagation of light due to the coupling of surface plasmons.
Keywords :
differential equations; finite difference time-domain analysis; nanotechnology; numerical stability; plasma filled waveguides; auxiliary differential equation; conformal dispersive FDTD; dispersion diagram; effective permittivities; finite-difference time-domain study; fourth-order discretisation; frequency domain embedding method; guided modes; nano-plasmonic waveguides; numerical instability; one-dimensional plasmonic waveguides; periodic infinite-long silver cylinders; Dispersion; Finite difference methods; Frequency; Optical arrays; Optical surface waves; Optical waveguides; Permittivity; Plasmons; Silver; Time domain analysis; Dispersion diagram; finite-difference time-domain (FDTD); nanoantennas; nanostructure; plasmonic waveguide;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2007.908370
Filename :
4380593
Link To Document :
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