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Metamaterials in the Terahertz Regime
Withayachumnankul, W.
Abbott, D.
Dept. of Inf. Eng., King Mongkut's Inst. of Technol. Ladkrabang, Bangkok, Thailand;
This paper appears in: Photonics Journal, IEEE
Publication Date: Aug. 2009
Volume: 1,
Issue: 2
On page(s): 99-118
ISSN: 1943-0655
INSPEC Accession Number: 10793111
Digital Object Identifier: 10.1109/JPHOT.2009.2026288
First Published: 2009-06-26
Current Version Published: 2009-07-24
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Metamaterials are artificial composites that acquire their electromagnetic properties from embedded subwavelength metallic structures. In theory, the effective electromagnetic properties of metamaterials at any frequency can be engineered to take on arbitrary values, including those not appearing in nature. As a result, this new class of materials can dramatically add a degree of freedom to the control of electromagnetic waves. The emergence of metamaterials fortunately coincides with the intense emerging interest in terahertz radiation (T-rays), for which efficient forms of electromagnetic manipulation are sought. Considering the scarcity of naturally existing materials that can control terahertz, metamaterials become ideal substitutes that promise advances in terahertz research. Ultimately, terahertz metamaterials will lead to scientific and technological advantages in a number of areas. This article covers the principles of metamaterials and reviews the latest trends in terahertz metamaterial research from the fabrication and characterization to the implementation.
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Controlled Indexing
metamaterials
submillimetre wave propagation
Non-controlled Indexing
effective electromagnetic property
embedded subwavelength metallic structure
metamaterials
terahertz radiation
terahertz regime
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Metamaterials
THz optics
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