Surface modes in plasmonic Bragg fibers with negative average permittivity
Abstract
We investigate surface modes in plasmonic Bragg fibers composed of nanostructured coaxial cylindrical metal-dielectric multilayers. We demonstrate that the existence of surface modes is determined by the sign of the spatially averaged permittivity of the plasmonic Bragg fiber, \bar{% \varepsilon}. Specifically, localized surface modes occur at the interface between the cylindrical core with and the outermost uniform dielectric medium, which is similar to the topologically protected plasmonic surface modes at the interface between two different one-dimensional planar metal-dielectric lattices with opposite signs of the averaged permittivity. Moreover, when increasing the number of dielectric-metal rings, the propagation constant of surface modes with different azimuthal mode numbers is approaching that of surface plasmon polaritons formed at the corresponding planar metal/dielectric interface. Robustness of such surface modes of plasmonic Bragg fibers is demonstrated too.
Keywords
Cite
@article{arxiv.1801.06667,
title = {Surface modes in plasmonic Bragg fibers with negative average permittivity},
author = {Hanying Deng and YiHang Chen and Nicolae C. Panoiu and 3. Boris A. Malomed and Fangwei Ye},
journal= {arXiv preprint arXiv:1801.06667},
year = {2018}
}
Comments
10 pages, 5 figures, Optics Express, to be published