DocumentCode :
3676131
Title :
Error-controlled boundary element modeling of 3D plasmonic nano-structures via higher-order Locally Corrected Nystrom method
Author :
Mohammad Shafieipour;Vladimir Okhmatovski
Author_Institution :
Dept. of Electrical and Computer Engineering, University of Manitoba, Winnipeg, Canada
fYear :
2015
fDate :
7/1/2015 12:00:00 AM
Firstpage :
189
Lastpage :
190
Abstract :
Traditional low order numerical method of computational electromagnetics produce notably higher error when applied to analysis of plasmonic nano-structures compared to the structures with conventional values of permittivity and permeability. The high error levels are typically observed at the junctions of the low-order elements on the surface of such structures. It is caused by the artificial geometrical discontinuities resulted from flat panelled approximation of the physically smooth surface. Increase of the low-order discretization density typically does not reduce such error effectively. In this work we describe higher-order boundary element modelling approach which eliminates such errors and provides error-controlled approximation of the fields in arbitrary smooth 3D structures down to machine precision if necessary. The approach is based on higher-order Locally Corrected Nystrom discretization of the traditional surface Electric Field and Magnetic Field integral equations formulated for multi-region penetrable objects.
Keywords :
"Plasmons","Optical waveguides","Three-dimensional displays","Electromagnetics","Surface waves","Integral equations"
Publisher :
ieee
Conference_Titel :
Antennas and Propagation & USNC/URSI National Radio Science Meeting, 2015 IEEE International Symposium on
Type :
conf
DOI :
10.1109/APS.2015.7304480
Filename :
7304480
Link To Document :
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