Title :
On the Possibilities to Create a Negative Permittivity Metamaterial With Zero Imaginary Part of the Permittivity at a Specific Frequency—Electrical Network Theory Approach
Author :
Berglind, Eilert ; Holmström, Petter ; Thylén, Lars
Author_Institution :
Lab. of Photonics & Microwave Eng., KTH R. Inst. of Technol., Kista, Sweden
fDate :
4/1/2012 12:00:00 AM
Abstract :
A permittivity function suggested in the literature describing a material that exhibits negative permittivity and no loss at a specific frequency (and losses at other frequencies) is analyzed using electrical network theory. An equivalent circuit of the polarization admittance consisting of RLC components is derived. Further, a proof is given showing that if the admittance is lossless at a specific frequency, then all components with losses (resistances) in the circuit have to be short circuited or blocked or virtually disconnected at this frequency by the use of ideal lossless resonant LC circuits. However, in the literature, inductors in metamaterials are associated with inherently lossy metal nanoparticles, hence invalidating the suggested permittivity function unless a lossless inductor at optical frequencies is found or proved possible.
Keywords :
LC circuits; equivalent circuits; inductors; light polarisation; metamaterials; nanoparticles; nanophotonics; optical losses; permittivity; RLC components; electrical network theory; equivalent circuit; inherently lossy metal nanoparticles; lossless inductor; lossless resonant LC circuits; negative permittivity metamaterial; optical frequencies; polarization admittance; resistance losses; zero imaginary part; Admittance; Metamaterials; Optical losses; Permittivity; Photonics; RLC circuits; Resonant frequency; Electrical network theory; metamaterials; nanostructures; negative-permittivity materials;
Journal_Title :
Quantum Electronics, IEEE Journal of
DOI :
10.1109/JQE.2011.2181824