DocumentCode :
3604026
Title :
Ultrabroadband Terahertz Absorption by Uniaxial Anisotropic Nanowire Metamaterials
Author :
Yang Shen ; Yong-Qiang Pang ; Jia-Fu Wang ; Hua Ma ; Zhi-Bin Pei ; Shao-Bo Qu
Author_Institution :
Coll. of Sci., Air Force Eng. Univ., Xi´an, China
Volume :
27
Issue :
21
fYear :
2015
Firstpage :
2284
Lastpage :
2287
Abstract :
Three-dimensional structure terahertz metamaterial absorbers with the properties of ultrabroadband and polarization-insensitive absorption were proposed. Different from the recent designs of the multilayer horizontal configurations, our design consists of the uniaxial anisotropic gold nanowire arrays that are filled in the frustum pyramid dielectric medium. The principle for the ultrabroadband absorption originates from the overlapping of the different but very closely positioned electromagnetic resonances. Each resonance frequency follows the equation of the odd multiple of the quarter wavelengths, which can be flexibly controlled by varying the height of the corresponding gold nanowires. In addition to the great prospect for the potential applications in terahertz, our design could also be easily extended to the other frequency regimes for a host of applications such as electromagnetic stealth, infrared detection, imaging, and solar cell.
Keywords :
dielectric materials; gold; light absorption; light polarisation; nanophotonics; nanowires; optical arrays; optical control; optical design techniques; optical metamaterials; terahertz metamaterials; terahertz waves; Au; electromagnetic resonances; electromagnetic stealth; frustum pyramid dielectric medium; infrared detection; infrared imaging; multilayer horizontal configuration designs; optical control; polarization-insensitive absorption; solar cell; ultrabroadband terahertz absorption; uniaxial anisotropic gold nanowire metamaterials; Absorption; Broadband communication; Dielectrics; Electric fields; Gold; Metamaterials; Resonant frequency; Metamaterials; nanowire; resonance; terahertz absorber;
fLanguage :
English
Journal_Title :
Photonics Technology Letters, IEEE
Publisher :
ieee
ISSN :
1041-1135
Type :
jour
DOI :
10.1109/LPT.2015.2461633
Filename :
7169530
Link To Document :
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