English

Numerical Investigation of Light Scattering off Split-Ring Resonators

Materials Science 2009-05-28 v1 Computational Physics Optics

Abstract

Recently, split ring-resonators (SRR's) have been realized experimentally in the near infrared (NIR) and optical regime. In this contribution we numerically investigate light propagation through an array of metallic SRR's in the NIR and optical regime and compare our results to experimental results. We find numerical solutions to the time-harmonic Maxwell's equations by using advanced finite-element-methods (FEM). The geometry of the problem is discretized with unstructured tetrahedral meshes. Higher order, vectorial elements (edge elements) are used as ansatz functions. Transparent boundary conditions and periodic boundary conditions are implemented, which allow to treat light scattering problems off periodic structures. This simulation tool enables us to obtain transmission and reflection spectra of plane waves which are incident onto the SRR array under arbitrary angles of incidence, with arbitrary polarization, and with arbitrary wavelength-dependencies of the permittivity tensor. We compare the computed spectra to experimental results and investigate resonances of the system.

Keywords

Cite

@article{arxiv.cond-mat/0510656,
  title  = {Numerical Investigation of Light Scattering off Split-Ring Resonators},
  author = {S. Burger and L. Zschiedrich and R. Klose and A. Schädle and F. Schmidt and C. Enkrich and S. Linden and M. Wegener and C. M. Soukoulis},
  journal= {arXiv preprint arXiv:cond-mat/0510656},
  year   = {2009}
}

Comments

9 pages, 8 figures (see original publication for images with a better resolution)

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