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Optical guided dispersions and subwavelength transmissions in dispersive plasmonic circular holes

Authors
Kim, K. Y.Cho, Y. K.Tae, H. S.Lee, J. H.
Issue Date
2006
Publisher
ELSEVIER SCIENCE BV
Keywords
dispersion; dispersive plasmonic hole; subwavelength guidance; surface plasmon polariton; surface wave
Citation
OPTO-ELECTRONICS REVIEW, v.14, no.3, pp.233 - 241
Journal Title
OPTO-ELECTRONICS REVIEW
Volume
14
Number
3
Start Page
233
End Page
241
URI
https://scholarworks.bwise.kr/hongik/handle/2020.sw.hongik/24605
DOI
10.2478/s11772-006-0031-z
ISSN
1230-3402
Abstract
The light transmission through a dispersive plasmonic circular hole is numerically investigated with an emphasis on its subwavelength guidance. For a better understanding of the effect of the hole diameter on the guided dispersion characteristics, the guided modes, including both the surface plasmon polariton mode and the circular waveguide mode, are studied for several hole diameters, especially when the metal cladding has a plasmonic frequency dependency. A brief comparison is also made with the guided dispersion characteristics of a dispersive plasmonic gap [K.Y Kim, et al., Opt. Express 14, 320-330 (2006)], which is a planar version of the present structure, and a circular waveguide with perfect electric conductor cladding: Finally, the modal behaviour of the first three TM-like principal modes with varied hole diameters is examined for the same operating mode.
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