Negative refraction in semiconductor metamaterials
Top Cited Papers
- 14 October 2007
- journal article
- Published by Springer Nature in Nature Materials
- Vol. 6 (12) , 946-950
- https://doi.org/10.1038/nmat2033
Abstract
An optical metamaterial is a composite in which subwavelength features, rather than the constituent materials, control the macroscopic electromagnetic properties of the material. Recently, properly designed metamaterials have garnered much interest because of their unusual interaction with electromagnetic waves. Whereas nature seems to have limits on the type of materials that exist, newly invented metamaterials are not bound by such constraints. These newly accessible electromagnetic properties make these materials an excellent platform for demonstrating unusual optical phenomena and unique applications such as subwavelength imaging and planar lens design. 'Negative-index materials', as first proposed, required the permittivity, epsilon, and permeability, mu, to be simultaneously less than zero, but such materials face limitations. Here, we demonstrate a comparatively low-loss, three-dimensional, all-semiconductor metamaterial that exhibits negative refraction for all incidence angles in the long-wave infrared region and requires only an anisotropic dielectric function with a single resonance. Using reflection and transmission measurements and a comprehensive model of the material, we demonstrate that our material exhibits negative refraction. This is furthermore confirmed through a straightforward beam optics experiment. This work will influence future metamaterial designs and their incorporation into optical semiconductor devices.Keywords
This publication has 15 references indexed in Scilit:
- Optical negative-index metamaterialsNature Photonics, 2007
- Optical nanotransmission lines: synthesis of planar left-handed metamaterials in the infrared and visible regimesJournal of the Optical Society of America B, 2006
- Demonstration of metal-dielectric negative-index metamaterials with improved performance at optical frequenciesJournal of the Optical Society of America B, 2006
- Negative index of refraction in optical metamaterialsOptics Letters, 2005
- Experimental Demonstration of Near-Infrared Negative-Index MetamaterialsPhysical Review Letters, 2005
- Terahertz Response of a Microfabricated Rod–Split-Ring-Resonator Electromagnetic MetamaterialPhysical Review Letters, 2005
- Effective Medium Theory of Left-Handed MaterialsPhysical Review Letters, 2004
- Experimental Verification of a Negative Index of RefractionScience, 2001
- Light propagation in stratified chiral media. The 4 × 4 matrix methodCrystallography Reports, 2000
- Composite Medium with Simultaneously Negative Permeability and PermittivityPhysical Review Letters, 2000