All-dielectric left-handed metamaterial based on dielectric resonator: Design, simulation and experiment

  • Yi Ming Yang
  • , Jia Fu Wang
  • , Song Xia
  • , Peng Bai
  • , Zhe Li
  • , Jun Wang
  • , Zhuo Xu
  • , Shao Bo Qu

Research output: Contribution to journalArticlepeer-review

18 Scopus citations

Abstract

Dipoles with Lorentz-type resonant electromagnetic responses can realise negative effective parameters in their negative resonant region. The electric dipole and magnetic dipole can realise, respectively, negative permittivity and negative permeability, so both the field distribution forms of electric and magnetic dipoles are fundamentals in designing left-handed metamaterial. Based on this principle, this paper studies the field distribution in high-permittivity dielectric materials. The field distributions at different resonant modes are analysed based on the dielectric resonator theory. The origination and influence factors of the electric and magnetic dipoles are confirmed. Numerical simulations indicate that by combining dielectric cubes with different sizes, the electric resonance frequency and magnetic resonance frequency can be superposed. Finally, experiments are carried out to verify the feasibility of all-dielectric left-handed metamaterial composed by this means.

Original languageEnglish
Article number014101
JournalChinese Physics B
Volume20
Issue number1
DOIs
StatePublished - Jan 2011

Keywords

  • All-dielectric left-handed metamaterial
  • dielectric resonator
  • electric dipole
  • magnetic dipole

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