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Double-negative electromagnetic metamaterials due to chirality

Analysis of PDEs 2017-12-11 v1 Mathematical Physics math.MP

Abstract

The aim of this paper is to provide a mathematical theory for understanding the mechanism behind the double-negative refractive index phenomenon in chiral materials. The design of double-negative metamaterials generally requires the use of two different kinds of subwavelength resonators, which may limit the applicability of double-negative metamaterials. Herein, we rely on media that consist of only a single type of dielectric resonant element, and show how the chirality of the background medium induces double-negative refractive index metamaterial, which refracts waves negatively, hence acting as a superlens. Using plasmonic dielectric particles, it is proved that both the effective electric permittivity and the magnetic permeability can be negative near some resonant frequencies. A justification of the approximation of a plasmonic particle in a chiral medium by the sum of a resonant electric dipole and a resonant magnetic dipole, is provided. Moreover, the set of resonant frequencies is characterized. For an appropriate volume fraction of plasmonic particles with certain conditions on their configuration, a double-negative effective medium can be obtained when the frequency is near one of the resonant frequencies.

Keywords

Cite

@article{arxiv.1712.02863,
  title  = {Double-negative electromagnetic metamaterials due to chirality},
  author = {Habib Ammari and Wei Wu and Sanghyeon Yu},
  journal= {arXiv preprint arXiv:1712.02863},
  year   = {2017}
}

Comments

28 pages, 1 figure

R2 v1 2026-06-22T23:11:46.603Z