Title :
Guided Plasmon Modes of Elliptical Cross Section Silver Nanoridges
Author :
Pan, Zeyu ; Guo, Junpeng ; Soref, Richard ; Buchwald, Walter
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Alabama, Huntsville, AL, USA
Abstract :
Propagating two-dimensional plasmon polariton modes guided by elliptical cross section silver nanoridges are investigated in this paper. Mode field profiles, dispersion curves, propagation distances, and figure-of-merits of the plasmon modes are calculated for various elliptical cross section silver nanoridges. It is found that the elliptical cross section metal nanoridge, if designed properly, can support a tightly confined plasmon mode with a longer propagation distance and a higher figure-of-merit than the flat-top nanoridge waveguide of the same width. The optimal nanoridge waveguide is obtained when the elliptical waveguide cross section becomes a semicircular cross section. When the curvature of the elliptical nanoridge is large, the nanoridge plasmon mode approaches the wedge plasmon mode.
Keywords :
nanophotonics; nanostructured materials; optical waveguides; plasmons; polaritons; silver; dispersion curves; elliptical cross section silver nanoridges; elliptical waveguide cross section; figure-of-merits; flat-top nanoridge waveguide; mode field profiles; optimal nanoridge waveguide; plasmon modes; propagation distances; semicircular cross section; two-dimensional plasmon polariton modes; Dispersion; Indexes; Nanobioscience; Optical waveguides; Plasmons; Silver; Optical waveguide; surface plasmon;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2012.2205557