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Propagation in and scattering from a matched metamaterial having a zero index of refraction

Physical Review E · 2004 · Vol. 70(4) · pp. 046608–046608
Richard W. Ziolkowski

Abstract

Planar metamaterials that exhibit a zero index of refraction have been realized experimentally by several research groups. Their existence stimulated the present investigation, which details the properties of a passive, dispersive metamaterial that is matched to free space and has an index of refraction equal to zero. Thus, unlike previous zero-index investigations, both the permittivity and permeability are zero here at a specified frequency. One-, two-, and three-dimensional source problems are treated analytically. The one- and two-dimensional source problem results are confirmed numerically with finite difference time domain (FDTD) simulations. The FDTD simulator is also used to treat the corresponding one- and two-dimensional scattering problems. It is shown that in both the source and scattering configurations the electromagnetic fields in a matched zero-index medium take on a static character in space, yet remain dynamic in time, in such a manner that the underlying physics remains associated with propagating fields. Zero phase variation at various points in the zero-index medium is demonstrated once steady-state conditions are obtained. These behaviors are used to illustrate why a zero-index metamaterial, such as a zero-index electromagnetic band-gap structured medium, significantly narrows the far-field pattern associated with an antenna located within it. They are also used to show how a matched zero-index slab could be used to transform curved wave fronts into planar ones.

Metamaterials and Metasurfaces ApplicationsAdvanced Antenna and Metasurface TechnologiesAntenna Design and AnalysisMetamaterialFinite-difference time-domain methodPhysicsScatteringOpticsSlabRefractive indexPlanarZero (linguistics)Negative refraction

Funding

  • Defense Advanced Research Projects Agency
Citations
668
FWCI
8.64
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References
Wave propagation in media having negative permittivity and permeability
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Physics Today · 1952 · 5,685 citations
Design, fabrication, and testing of double negative metamaterials
IEEE Transactions on Antennas and Propagation · 2003 · 935 citations
Planar negative refractive index media using periodically L-C loaded transmission lines
IEEE Transactions on Microwave Theory and Techniques · 2002 · 1,432 citations
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