Access
To read this story in full you will need to login or make a payment (see right).
Letter
Nature Photonics 2, 295 - 298 (2008)
Published online: 13 April 2008 | doi:10.1038/nphoton.2008.52
Subject Categories: Novel materials and engineered structures | Terahertz optics
Experimental demonstration of frequency-agile terahertz metamaterials
Hou-Tong Chen1, John F. O'Hara1, Abul K. Azad1, Antoinette J. Taylor1, Richard D. Averitt2, David B. Shrekenhamer3 & Willie J. Padilla3
Abstract
Metamaterials exhibit numerous novel effects1, 2, 3, 4, 5 and operate over a large portion of the electromagnetic spectrum6, 7, 8, 9, 10. Metamaterial devices based on these effects include gradient-index lenses11, 12, modulators for terahertz radiation13, 14, 15 and compact waveguides16. The resonant nature of metamaterials results in frequency dispersion and narrow bandwidth operation where the centre frequency is fixed by the geometry and dimensions of the elements comprising the metamaterial composite. The creation of frequency-agile metamaterials would extend the spectral range over which devices function and, further, enable the manufacture of new devices such as dynamically tunable notch filters. Here, we demonstrate such frequency-agile metamaterials operating in the far-infrared by incorporating semiconductors in critical regions of metallic split-ring resonators. For this first-generation device, external optical control results in tuning of the metamaterial resonance frequency by
20%
. Our approach is integrable with current semiconductor technologies and can be implemented in other regions of the electromagnetic spectrum.
To read this story in full you will need to login or make a payment (see right).
MORE ARTICLES LIKE THIS
These links to content published by NPG are automatically generated.
NEWS AND VIEWS
Metamaterials A tunable terahertz responseNature Photonics News and Views (01 May 2008)
Device physics A terahertz modulatorNature News and Views (30 Nov 2006)
See all 4 matches for News And ViewsRESEARCH
Active terahertz metamaterial devicesNature Letters to Editor (30 Nov 2006)
Terahertz time-domain measurement of ballistic electron resonance in a single-walled carbon nanotubeNature Nanotechnology Letter (01 Apr 2008)
See all 19 matches for Research