English

Numerical simulation studies of nano-scale Surface plasmon components: waveguides, splitters and filters

Optics 2009-02-10 v1

Abstract

In this paper, we theoretically and numerically demonstrate a two-dimensional Metal-Dielectric-Metal (MDM) waveguide based on finite-difference time-domain simulation of the propagation characteristics of surface plasmon polaritons (SPPs). For practical applications, we propose a plasmonic Y-branch waveguide based on MDM structure for high integration. The simulation results show that the Y-branch waveguide proposed here makes optical splitter with large branching angle (~180 degree) come true. We also introduce a finite array of periodic tooth structure on one surface of the MDM waveguide which is in a similar way as FBGs or Bragg reflectors, potentially as filters for WDM applications. Our results show that the novel structure not only can realize filtering function of wavelength with a high transmittance over 92%, but also with an ultra-compact size in the length of a few hundred nanometers, in comparison with other grating-like SPPs filters. The MDM waveguide splitters and filters could be utilized to achieve ultra-compact photonic filtering devices for high integration in SPPs-based flat metallic surfaces.

Keywords

Cite

@article{arxiv.0902.1397,
  title  = {Numerical simulation studies of nano-scale Surface plasmon components: waveguides, splitters and filters},
  author = {Xian-Shi Lin and Xu-Guang Huang},
  journal= {arXiv preprint arXiv:0902.1397},
  year   = {2009}
}

Comments

7 pages, 5 figures, conference

R2 v1 2026-06-21T12:09:14.877Z