Asymmetric transmission in planar chiral split-ring metamaterials: Microscopic Lorentz-theory approach

Andrey V. Novitsky, Vladimir M. Galynsky, and Sergei V. Zhukovsky
Phys. Rev. B 86, 075138 – Published 21 August 2012

Abstract

The electronic Lorentz theory is employed to explain the optical properties of planar split-ring metamaterials. Starting from the dynamics of individual free carriers, the electromagnetic response of an individual split-ring meta-atom is determined, and the effective permittivity tensor of the metamaterial is calculated for normal incidence of light. Whenever the split ring lacks in-plane mirror symmetry, the corresponding permittivity tensor has a crystallographic structure of an elliptically dichroic medium, and the metamaterial exhibits optical properties of planar chiral structures. Its transmission spectra are different for right-handed versus left-handed circular polarization of the incident wave, so the structure changes its transmittance when the direction of incidence is reversed. The magnitude of this change is shown to be related to the geometric parameters of the split ring. The proposed approach can be generalized to a wide variety of metal-dielectric metamaterial geometries.

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  • Received 14 January 2011

DOI:https://doi.org/10.1103/PhysRevB.86.075138

©2012 American Physical Society

Authors & Affiliations

Andrey V. Novitsky1,2,*, Vladimir M. Galynsky2, and Sergei V. Zhukovsky1,3,4,†

  • 1DTU Fotonik, Department of Photonics Engineering, Technical University of Denmark, Ørsteds Plads 343, DK-2800 Kgs. Lyngby, Denmark
  • 2Department of Theoretical Physics, Belarusian State University, Nezavisimosti Avenue 4, 220030 Minsk, Belarus
  • 3Department of Physics and Institute for Optical Sciences, University of Toronto, 60 St. George Street, Toronto, Ontario M5S 1A7, Canada
  • 4Theoretical Nano-Photonics, Institute of High-Frequency and Communication Technology, Faculty of Engineering, University of Wuppertal, Rainer-Gruenter-Str. 21, D-42119 Wuppertal, Germany

  • *anov@fotonik.dtu.dk
  • szhukov@physics.utoronto.ca

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Vol. 86, Iss. 7 — 15 August 2012

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